Co-reporter:Jason J. Pflueger, Louis C. Morrill, Justine N. deGruyter, Melecio A. Perea, and Richmond Sarpong
Organic Letters September 1, 2017 Volume 19(Issue 17) pp:
Publication Date(Web):August 18, 2017
DOI:10.1021/acs.orglett.7b02260
A synthetic strategy to access the fused 6–7–6 tricyclic core of hetisine-type C20-diterpenoid alkaloids is reported. This strategy employs a Diels–Alder cycloaddition to assemble a fused bicyclic anhydride intermediate, which is elaborated to a vinyl lactone-acetal bearing an aromatic ring in five steps. Aromatic iodination is followed by magnesium–halogen exchange with a trialkyl magnesiate species, which undergoes intramolecular cyclization. Subsequent oxidation provides the desired 6–7–6 tricyclic diketoaldehyde, with carbonyl groups at all three positions for eventual C–N bond formation and subsequent elaboration.
Co-reporter:Peter Finkbeiner, Kenichi Murai, Michael Röpke, and Richmond Sarpong
Journal of the American Chemical Society August 23, 2017 Volume 139(Issue 33) pp:11349-11349
Publication Date(Web):August 1, 2017
DOI:10.1021/jacs.7b06823
Carvone is a sustainable and readily available starting material for organic synthesis. Herein, we present the syntheses of various natural product scaffolds that rely on a novel benzannulation involving the α-methyl group (C-10) of carvone to afford a versatile tetralin. The utility of our synthetic approach is highlighted by its application to a short synthesis of the ent-3,4-seco-atisane diterpenoid (−)-crotogoudin. The 13-step enantiospecific synthesis features a regioselective double oxidative dearomatization, a Diels–Alder cycloaddition with ethylene gas (to construct the bicyclo[2.2.2]octane framework), and a final acid-mediated lactonization. The versatility of this benzannulation strategy is demonstrated by its utility in the preparation of the carbon skeleton of ent-3,4-seco-abietane diterpenoids using an intramolecular oxidative dearomatization.
Co-reporter:Sidney M. Wilkerson-Hill, Diana Yu, Phillip P. Painter, Ethan L. Fisher, Dean J. Tantillo, Richmond Sarpong, and Jason E. Hein
Journal of the American Chemical Society August 2, 2017 Volume 139(Issue 30) pp:10569-10569
Publication Date(Web):July 6, 2017
DOI:10.1021/jacs.7b06007
A mechanistic study of a new heterocycloisomerization reaction that forms annulated aminopyrroles is presented. Density functional theory calculations and kinetic studies suggest the reaction is catalyzed by trace copper salts and that a Z- to E-hydrazone isomerization occurs through an enehydrazine intermediate before the rate-determining cyclization of the hydrazone onto the alkyne group. The aminopyrrole products are obtained in 36–93% isolated yield depending on the nature of the alkynyl substituent. A new automated sampling technique was developed to obtain robust mechanistic data.
Co-reporter:Hélène M.-F. Viart, Andreas Bachmann, William Kayitare, and Richmond Sarpong
Journal of the American Chemical Society 2017 Volume 139(Issue 3) pp:1325-1329
Publication Date(Web):January 1, 2017
DOI:10.1021/jacs.6b12569
Many site-selective palladium-catalyzed C–H functionalization methods require directing groups. We report here β-carboline amides as intrinsic directing groups for C(sp2)–H functionalization. Various substrates including the natural product alangiobussinine and the marinacarboline core structure were functionalized using carboline-directed δ-C(sp2)–H alkynylations. This transformation proceeds under mild conditions and is compatible with a wide variety of β-arylethamines. δ-Alkynylation of β-arylethamines via a six-membered palladacycle is favored over γ-C(sp2)–H bond functionalization when both positions are accessible. The versatility of β-carboline amides as directing groups is evidenced by other δ-C(sp2)–H functionalizations such as alkenylation, arylation, and C–N bond formation.
Co-reporter:Vincent N. G. Lindsay;Rebecca A. Murphy
Chemical Communications 2017 vol. 53(Issue 74) pp:10291-10294
Publication Date(Web):2017/09/14
DOI:10.1039/C7CC06367A
The pronounced beneficial effect of a precise amount of protic additive in an enantioselective Cu-catalysed Diels–Alder reaction is reported. This reaction, which employs a cyclic alkylidene β-ketoester as a dienophile, represents one of the first examples of a transformation where these extremely versatile, though highly unstable reaction partners participate effectively in catalytic asymmetric cycloaddition with a functionalised diene. The cycloadduct was used as an intermediate towards the synthesis of magellanine-type Lycopodium alkaloids featuring a Stille cross-coupling of a highly congested enol triflate and a unique Meinwald rearrangement/cyclopropanation sequence.
Co-reporter:Kevin G. M. Kou, Beryl X. Li, Jack C. Lee, Gary M. Gallego, Terry P. Lebold, Antonio G. DiPasquale, and Richmond Sarpong
Journal of the American Chemical Society 2016 Volume 138(Issue 34) pp:10830-10833
Publication Date(Web):August 15, 2016
DOI:10.1021/jacs.6b07268
The denudatine-type diterpenoid alkaloids cochlearenine, N-ethyl-1α-hydroxy-17-veratroyldictyzine, and paniculamine have been synthesized for the first time (25, 26, and 26 steps from 16, respectively). These syntheses take advantage of a common intermediate (8) that we have previously employed in preparing aconitine-type natural products. The syntheses reported herein complete the realization of a unified strategy for the preparation of C20, C19, and C18 diterpenoid alkaloids.
Co-reporter:Sidney Malik Wilkerson-Hill, Shota Sawano, and Richmond Sarpong
The Journal of Organic Chemistry 2016 Volume 81(Issue 22) pp:11132-11144
Publication Date(Web):October 14, 2016
DOI:10.1021/acs.joc.6b02111
Herein we describe the first approach to 3-oxidopyrylium ions from a linear precursor. Heating bis(1-cyanovinyl acetate) in the presence of a trace amount of pyridinium p-toluenesulfonate results in a series of acyl group transfers and an intramolecular cyclization event to form a 3-oxidopyrylium ion that can be trapped by reaction with several dipolarophiles. When treated with dienes, the result is a sequential [5 + 2]/[4 + 2] cycloaddition reaction that provides sp3-rich products of high molecular complexity.
Co-reporter:Sidney M. Wilkerson-Hill, Christián M. Lavados, Richmond Sarpong
Tetrahedron 2016 Volume 72(Issue 26) pp:3635-3640
Publication Date(Web):30 June 2016
DOI:10.1016/j.tet.2016.03.074
Functionalized tetrahydrofluorenes were synthesized using a normal electron-demand Diels–Alder cycloaddition reaction between 2-vinylindenes and various dienophiles. Electron rich 2-vinylindenes bearing methoxy groups at the 4- and 7- positions were accessed through their corresponding 2-indenylpivalates obtained using a Pt-catalyzed cycloisomerization reaction. DFT calculations were used to rationalize the observed regioselectivity in the Diels–Alder reaction, and the cycloadditions were extended to a 2-allenylindene substrate.
Co-reporter:Ahmad Masarwa; Manuel Weber
Journal of the American Chemical Society 2015 Volume 137(Issue 19) pp:6327-6334
Publication Date(Web):April 19, 2015
DOI:10.1021/jacs.5b02254
The continued development of transition-metal-mediated C–C bond activation/cleavage methods would provide even more opportunities to implement novel synthetic strategies. We have explored the Rh(I)-catalyzed C–C activation of cyclobutanols resident in hydroxylated derivatives of pinene, which proceed in a complementary manner to the C–C bond cleavage that we have observed with many traditional electrophilic reagents. Mechanistic and computational studies have provided insight into the role of C–H bond activation in the stereochemical outcome of the Rh-catalyzed C–C bond activation process. Using this new approach, functionalized cyclohexenones that form the cores of natural products, including the spiroindicumides and phomactin A, have been accessed.
Co-reporter:Vincent N. G. Lindsay; Hélène M.-F. Viart
Journal of the American Chemical Society 2015 Volume 137(Issue 26) pp:8368-8371
Publication Date(Web):June 20, 2015
DOI:10.1021/jacs.5b04295
A general approach for the formation of five-membered saturated heterocycles by intramolecular C(sp3)–H functionalization is reported. Using N-sulfonyltriazoles as Rh(II) azavinyl carbene equivalents, a wide variety of stereodefined cis-2,3-disubstituted tetrahydrofurans were obtained with good to excellent diastereoselectivity from readily available acyclic precursors. The reaction is shown to be amenable to gram scale, and judicious choice of reaction conditions allowed for stereodivergence, providing selective access to the trans diastereomer in good yield. The resulting products were shown to be valuable intermediates for the direct preparation of fused N-heterotricycles in one step by intramolecular C–H amination or Pictet–Spengler cyclization.
Co-reporter:Eduardo V. Mercado-Marin and Richmond Sarpong
Chemical Science 2015 vol. 6(Issue 8) pp:5048-5052
Publication Date(Web):18 Jun 2015
DOI:10.1039/C5SC01977J
A unified strategy for the synthesis of congeners of the prenylated indole alkaloids is presented. This strategy has yielded the first synthesis of the natural product (−)-17-hydroxy-citrinalin B as well as syntheses of (+)-stephacidin A and (+)-notoamide I. An enolate addition to an in situ generated isocyanate was utilized in forging a key bicyclo[2.2.2]diazaoctane moiety, and in this way connected the two structural classes of the prenylated indole alkaloids through synthesis.
Co-reporter:Manuel Weber, Kyle Owens, Ahmad Masarwa, and Richmond Sarpong
Organic Letters 2015 Volume 17(Issue 21) pp:5432-5435
Publication Date(Web):October 20, 2015
DOI:10.1021/acs.orglett.5b02797
An approach to construct enantiopure complex natural product-like frameworks, including the first reported synthesis of a C17 oxygenated taxoid scaffold, is presented. A palladium-catalyzed C–C activation/cross-coupling is utilized to access these structures in a short sequence from (+)-carvone; the scope of this reaction is explored.
Co-reporter:Rebecca E. Johnson, Tristan de Rond, Vincent N. G. Lindsay, Jay D. Keasling, and Richmond Sarpong
Organic Letters 2015 Volume 17(Issue 14) pp:3474-3477
Publication Date(Web):June 26, 2015
DOI:10.1021/acs.orglett.5b01527
The enantiomers of the natural product cycloprodigiosin were prepared using an expedient five-step synthetic sequence that takes advantage of a Schöllkopf–Barton–Zard (SBZ) pyrrole annulation with a chiral isocyanoacetate and a nitrocyclohexene derivative. Using chiral HPLC and X-ray crystallographic analyses of the synthetically prepared material and natural isolate (isolated from the marine bacterium Pseudoalteromonas rubra), naturally occurring cycloprodigiosin was determined to be a scalemic mixture occurring in an enantiomeric ratio of 83:17 (R)/(S) at C4′.
Co-reporter:Stephen T. Heller;James N. Newton;Tingting Fu
Angewandte Chemie 2015 Volume 127( Issue 34) pp:9977-9981
Publication Date(Web):
DOI:10.1002/ange.201502894
Abstract
A one-pot procedure for the synthesis of unsymmetrical ketones utilizing a pyrrole-bearing carbonyl linchpin reagent (carbonyl linchpin N,O-dimethylhydroxylamine pyrrole; CLAmP) is reported. In contrast to other carbonyl dielectrophile equivalents, CLAmP enables the synthesis of ketones from a variety of organolithium and Grignard reagents. The electrophilic nature of CLAmP enables the addition of less reactive as well as thermally unstable nucleophiles. CLAmP was designed to form kinetically stable tetrahedral intermediates upon the addition of organometallic nucleophiles. Evidence for the existence of persistent tetrahedral intermediates was obtained through in situ IR studies.
Co-reporter:Stephen T. Heller;James N. Newton;Tingting Fu
Angewandte Chemie International Edition 2015 Volume 54( Issue 34) pp:9839-9843
Publication Date(Web):
DOI:10.1002/anie.201502894
Abstract
A one-pot procedure for the synthesis of unsymmetrical ketones utilizing a pyrrole-bearing carbonyl linchpin reagent (carbonyl linchpin N,O-dimethylhydroxylamine pyrrole; CLAmP) is reported. In contrast to other carbonyl dielectrophile equivalents, CLAmP enables the synthesis of ketones from a variety of organolithium and Grignard reagents. The electrophilic nature of CLAmP enables the addition of less reactive as well as thermally unstable nucleophiles. CLAmP was designed to form kinetically stable tetrahedral intermediates upon the addition of organometallic nucleophiles. Evidence for the existence of persistent tetrahedral intermediates was obtained through in situ IR studies.
Co-reporter:Paul R. Leger;Rebecca A. Murphy;Eugenia Pushkarskaya ; Richmond Sarpong
Chemistry - A European Journal 2015 Volume 21( Issue 11) pp:4377-4383
Publication Date(Web):
DOI:10.1002/chem.201406242
Abstract
Progress toward the total syntheses of a diverse set of fawcettimine-type Lycopodium alkaloids via a “Heathcock-type” 6–5–9 tricycle is disclosed. This route features an intermolecular Diels–Alder cycloaddition to rapidly furnish the 6–5-fused bicycle and a highly chemoselective directed hydrogenation to build the azonane fragment. While conducting these synthetic studies, trimethylsilyl iodide was found to effect a hydroamination reaction to furnish the tetracyclic core of serratine and related natural products. This observation has been expanded into a general method for the room temperature hydroamination of unactivated olefins with tosylamides utilizing catalytic “anhydrous” HI (generated in situ from trimethylsilyl iodide and water). The presence of the iodide anion is critical to the success of this Brønsted acid catalyzed protocol, possibly due to its function as a weakly coordinating anion. These conditions also effect the analogous hydroetherification reaction of alcohols with unactivated olefins.
Co-reporter:Timothy K. Beng, Sidney M. Wilkerson-Hill, and Richmond Sarpong
Organic Letters 2014 Volume 16(Issue 3) pp:916-919
Publication Date(Web):January 23, 2014
DOI:10.1021/ol403671s
The synthesis of functionalized azepanes was accomplished through the palladium-mediated cross-coupling of α-halo eneformamides with mostly unactivated nucleophiles under mild conditions. Alkenylations proceeded with excellent stereoselectivitiy. In most cases, high yields of the coupling products were obtained.
Co-reporter:Amy M. Hamlin, Jessica K. Kisunzu and Richmond Sarpong
Organic & Biomolecular Chemistry 2014 vol. 12(Issue 12) pp:1846-1860
Publication Date(Web):03 Feb 2014
DOI:10.1039/C3OB42541J
Within the diterpenoid alkaloid family of natural products, the hetidine and hetisine structural types have been the targets of a number of synthetic studies. Various strategies have been pursued to access the azacyclic moiety of these natural products as well as the characteristic [2.2.2] bicyclic structural motif. This perspective article examines the different disconnections and approaches that have been applied to the synthesis of these natural products to date.
Co-reporter:Rebecca A. Murphy ; Richmond Sarpong
Chemistry - A European Journal 2014 Volume 20( Issue 1) pp:42-56
Publication Date(Web):
DOI:10.1002/chem.201303975
Abstract
The fawcettimine-type Lycopodium alkaloids have garnered significant attention from synthetic organic chemists since the isolation of fawcettimine in 1959. Despite being targets of interest for over 50 years, most of the strategies employed in the syntheses of fawcettimine congeners have built upon Inubushi and Heathcock’s original work, realized in 1979 and 1986, respectively. This elegant strategy has been explored and expanded upon in the intervening years since the original publications, in what we now call the Heathcock-inspired strategy. While other disconnections have been disclosed, this strategy remains one of the most efficient. In this Concept article, we focus on exploring a number of recent Heathcock-inspired syntheses of fawcettimine-type Lycopodium alkaloids. We also briefly discuss alternative, novel disconnections.
Co-reporter:Amy M. Hamlin, David Lapointe, Kyle Owens, and Richmond Sarpong
The Journal of Organic Chemistry 2014 Volume 79(Issue 15) pp:6783-6800
Publication Date(Web):July 8, 2014
DOI:10.1021/jo501214b
The full details of a synthesis of the hetidine framework of the C20-diterpenoid alkaloids and its conversion to the atisine core structure are reported. The application of the hetidine framework to the synthesis of dihydronavirine, which is the formal reduction product of the natural product navirine, is also described. Key to the success of these studies is the use of a Ga(III)-catalyzed cycloisomerization reaction of alkynylindenes to prepare a [6–7–6] framework that was advanced to the hetidine skeleton. Furthermore, a Michael/aldol sequence was developed for the construction of the bicyclo[2.2.2] framework that is characteristic of the hetidines and atisines.
Co-reporter:Erica E. Schultz;Vincent N. G. Lindsay; Richmond Sarpong
Angewandte Chemie International Edition 2014 Volume 53( Issue 37) pp:9904-9908
Publication Date(Web):
DOI:10.1002/anie.201405356
Abstract
A general method for the formation of fused dihydroazepine derivatives from 1-sulfonyl-1,2,3-triazoles bearing a tethered diene is reported. The process involves an intramolecular cyclopropanation of an α-imino rhodium(II) carbenoid, leading to a transient 1-imino-2-vinylcyclopropane intermediate which rapidly undergoes a 1-aza-Cope rearrangement to generate fused dihydroazepine derivatives in moderate to excellent yields. The reaction proceeds with similar efficiency on gram scale. The use of catalyst-free conditions leads to the formation of a novel [4.4.0] bicyclic heterocycle.
Co-reporter:Erica E. Schultz;Vincent N. G. Lindsay; Richmond Sarpong
Angewandte Chemie 2014 Volume 126( Issue 37) pp:10062-10066
Publication Date(Web):
DOI:10.1002/ange.201405356
Abstract
A general method for the formation of fused dihydroazepine derivatives from 1-sulfonyl-1,2,3-triazoles bearing a tethered diene is reported. The process involves an intramolecular cyclopropanation of an α-imino rhodium(II) carbenoid, leading to a transient 1-imino-2-vinylcyclopropane intermediate which rapidly undergoes a 1-aza-Cope rearrangement to generate fused dihydroazepine derivatives in moderate to excellent yields. The reaction proceeds with similar efficiency on gram scale. The use of catalyst-free conditions leads to the formation of a novel [4.4.0] bicyclic heterocycle.
Co-reporter:Erica E. Schultz
Journal of the American Chemical Society 2013 Volume 135(Issue 12) pp:4696-4699
Publication Date(Web):March 11, 2013
DOI:10.1021/ja401380d
Rh-bound trimethylenemethane variants generated from the interaction of a Rh-carbenoid with an allene have been applied to the synthesis of substituted 3,4-fused pyrroles. The pyrrole products are useful starting points for the syntheses of various dipyrromethene ligands. Furthermore, the methodology has been applied to a synthesis of the natural product cycloprodigiosin, which demonstrates antitumor and immunosuppressor activity.
Co-reporter:Jenna L. Jeffrey and Richmond Sarpong
Chemical Science 2013 vol. 4(Issue 11) pp:4092-4106
Publication Date(Web):04 Jul 2013
DOI:10.1039/C3SC51420J
Increasing interest in C(sp3)–H bond functionalization has led to a multitude of recent advances in intramolecular C(sp3)–H amination. Direct, intramolecular C(sp3)–N bond-forming processes provide expedient access to a range of azacycles without the need for prefunctionalized amine precursors such as aminoaldehydes, aminoalkyl halides or aminoalkenes. Some of these methods have been successfully applied to the synthesis of complex natural products. This Perspective provides a historical context for these methods and describes recent contributions, as well as the remaining challenges to intramolecular C(sp3)–H amination.
Co-reporter:Devon A. Mundal and Richmond Sarpong
Organic Letters 2013 Volume 15(Issue 19) pp:4952-4955
Publication Date(Web):September 19, 2013
DOI:10.1021/ol402177a
The core architecture of the citrinadin alkaloids has been prepared in racemic form by utilizing a strategy that exploits the alkylation of 2-methoxypyridines. An initially planned indolizidine to quinolizidine transformation to build the D/E rings was unsuccessful. Success was ultimately gained by a direct alkylation to establish the citrinadin core architecture.
Co-reporter:Jenna L. Jeffrey;Emily S. Bartlett ; Richmond Sarpong
Angewandte Chemie 2013 Volume 125( Issue 8) pp:2250-2253
Publication Date(Web):
DOI:10.1002/ange.201209591
Co-reporter:Amy M. Hamlin;Felipe de Jesus Cortez;David Lapointe ; Richmond Sarpong
Angewandte Chemie 2013 Volume 125( Issue 18) pp:4954-4957
Publication Date(Web):
DOI:10.1002/ange.201209030
Co-reporter:Jessica K. Kisunzu ; Richmond Sarpong
Angewandte Chemie 2013 Volume 125( Issue 41) pp:10890-10892
Publication Date(Web):
DOI:10.1002/ange.201305464
Co-reporter:Stephen T. Heller;Toshihiro Kiho;Alison R. H. Narayan ; Richmond Sarpong
Angewandte Chemie International Edition 2013 Volume 52( Issue 42) pp:11129-11133
Publication Date(Web):
DOI:10.1002/anie.201304687
Co-reporter:Jessica K. Kisunzu ; Richmond Sarpong
Angewandte Chemie International Edition 2013 Volume 52( Issue 41) pp:10694-10696
Publication Date(Web):
DOI:10.1002/anie.201305464
Co-reporter:Amy M. Hamlin;Felipe de Jesus Cortez;David Lapointe ; Richmond Sarpong
Angewandte Chemie International Edition 2013 Volume 52( Issue 18) pp:4854-4857
Publication Date(Web):
DOI:10.1002/anie.201209030
Co-reporter:Jenna L. Jeffrey;Emily S. Bartlett ; Richmond Sarpong
Angewandte Chemie International Edition 2013 Volume 52( Issue 8) pp:2194-2197
Publication Date(Web):
DOI:10.1002/anie.201209591
Co-reporter:James N. Newton;Dr. Daniel F. Fischer; Richmond Sarpong
Angewandte Chemie International Edition 2013 Volume 52( Issue 6) pp:1726-1730
Publication Date(Web):
DOI:10.1002/anie.201208571
Co-reporter:Stephen T. Heller;Toshihiro Kiho;Alison R. H. Narayan ; Richmond Sarpong
Angewandte Chemie 2013 Volume 125( Issue 42) pp:11335-11339
Publication Date(Web):
DOI:10.1002/ange.201304687
Co-reporter:James N. Newton;Dr. Daniel F. Fischer; Richmond Sarpong
Angewandte Chemie 2013 Volume 125( Issue 6) pp:1770-1774
Publication Date(Web):
DOI:10.1002/ange.201208571
Co-reporter:Felipe de Jesus Cortez, David Lapointe, Amy M. Hamlin, Eric M. Simmons, Richmond Sarpong
Tetrahedron 2013 69(27–28) pp: 5665-5676
Publication Date(Web):
DOI:10.1016/j.tet.2013.04.049
Co-reporter:Ethan L. Fisher ; Sidney M. Wilkerson-Hill
Journal of the American Chemical Society 2012 Volume 134(Issue 24) pp:9946-9949
Publication Date(Web):June 4, 2012
DOI:10.1021/ja3045647
A W(CO)5·THF-catalyzed cycloisomerization of bicyclo[4.1.0] substrates to afford mono C4-substituted 4,5-dihydro-benzo[b]furans and -indoles is reported. The title compounds are versatile intermediates that lead to a range of fused bicycles including the cores of various furan-, benzofuran-, and indole-containing natural products. In many cases, the functionalization of the dihydro-benzo[b]furans and -indoles is orthogonal to that of the corresponding benzofurans and indoles and, thus, offers complementary approaches for synthesis.
Co-reporter:Gary M. Gallego and Richmond Sarpong
Chemical Science 2012 vol. 3(Issue 4) pp:1338-1342
Publication Date(Web):17 Jan 2012
DOI:10.1039/C2SC01068B
Aryl pinacolboronic esters, which are robust and easily handled boronic acid derivatives, effectively add in an intramolecular 1,2 fashion into unactivated ketone groups in the presence of the rhodium complexes [Rh(cod)(MeCN)2]BF4 and a tertiary amine base or [Rh(cod)(OH)]2 and bisphosphine ligands. The latter set of conditions has been utilized in the enantioselective synthesis of indanols bearing tertiary alcohol groups. The overall transformation serves as a complement to the use of boronic acids as well as traditional nucleophiles such as Grignards, zinc reagents and lithium reagents for enantioselective, intramolecular additions to unactivated ketones, especially those additions which require nucleophilic partners that need to be handled over multiple steps.
Co-reporter:Raul A. Leal, Danial R. Beaudry, Saeed K. Alzghari, and Richmond Sarpong
Organic Letters 2012 Volume 14(Issue 20) pp:5350-5353
Publication Date(Web):September 28, 2012
DOI:10.1021/ol302535r
An effective synthesis of the pentacyclic core of the unusual Kopsia alkaloid arboflorine is reported. The success of the synthetic route rested on the use of a borylative C–H functionalization reaction, a convergent Suzuki cross-coupling to a C(2) halogenated indole, and an unprecedented transannular dehydrogenative C–N bond forming reaction.
Co-reporter:Jenna L. Jeffrey and Richmond Sarpong
Organic Letters 2012 Volume 14(Issue 21) pp:5400-5403
Publication Date(Web):October 12, 2012
DOI:10.1021/ol3024117
Direct C(6) alkylation of pyridyl alcohols can be achieved following an initial deprotonation of the hydroxy group. This transformation, which is believed to occur by a Chichibabin-type alkylation, avoids lateral deprotonation prior to pyridine ring alkylation and gives increased regioselectivity for C(6) over C(4) alkylation.
Co-reporter:Erica E. Schultz, Brian G. Pujanauski, and Richmond Sarpong
Organic Letters 2012 Volume 14(Issue 2) pp:648-651
Publication Date(Web):January 3, 2012
DOI:10.1021/ol203302f
A rapid synthesis of the tetracyclic core of Kopsia indole alkaloids related to lapidilectine B, grandilodine C, and tenuisine A is reported. Key to the success of this route was an efficient and scalable Ugi four-component coupling to install all the necessary carbons found in the natural products.
Co-reporter:Rebecca A. Murphy and Richmond Sarpong
Organic Letters 2012 Volume 14(Issue 2) pp:632-635
Publication Date(Web):December 27, 2011
DOI:10.1021/ol203269f
A concise enantioselective approach to the tetracyclic core of the magellanine-type Lycopodium alkaloids is reported. Key to this approach is the use of the Hajos–Parrish reaction to set a challenging quaternary stereocenter, thereby guiding the stereoselectivity for the remainder of the synthesis, as well as the use of a palladium-mediated direct pyridine functionalization reaction to forge the tetracyclic core.
Co-reporter:Terry P. Lebold, Gary M. Gallego, Christopher J. Marth, and Richmond Sarpong
Organic Letters 2012 Volume 14(Issue 8) pp:2110-2113
Publication Date(Web):April 3, 2012
DOI:10.1021/ol300647k
An efficient synthesis of the octahydro-1H-2,4-methanoindene core of phragmalin-type limonoids, such as xyloccensins O and P, is reported. The success of the synthetic route is predicated on the use of network analysis in the retrosynthetic analysis and a Diels–Alder reaction for the synthesis of a key hydrindanone derivative.
Co-reporter:Stephen T. Heller, Tingting Fu, and Richmond Sarpong
Organic Letters 2012 Volume 14(Issue 8) pp:1970-1973
Publication Date(Web):April 2, 2012
DOI:10.1021/ol300339q
Carbonylimidazole derivatives have been found to be highly active acylation reagents for esterification and amidation in the presence of pyridinium salts. These reactions are thought to involve both Brønsted acid and nucleophilic catalysis. This mode of activation has been applied to the synthesis of difficult to access oxazolidinones, as well as esters and amides. Finally, the use of pyridinium salts has been shown to accelerate the esterification of carboxylic acids with imidazole carbamates.
Co-reporter:Alison R. Hardin Narayan and Richmond Sarpong
Organic & Biomolecular Chemistry 2012 vol. 10(Issue 1) pp:70-78
Publication Date(Web):20 Sep 2011
DOI:10.1039/C1OB06423A
Indolizinones are under-explored N-heterocycles that react with exquisite chemo- and stereoselectivity. An exploration of the fundamental reactivity of these azabicycles demonstrates the potential to relay stereochemical information from the ring-fusion to newly formed stereocenters on the bicyclic core. The indolizinone diene undergoes selective hydrogenation and readily participates in Diels–Alder cycloadditions as well as ene reactions. The vinylogous amide embedded in the five-membered ring is resistant to reaction when the diene is in place. However, removal of the diene allows for diastereoselective hydrogenation of, and 1,4-additions to, the vinylogous amide. These fundamental reactions with indolizinones have provided a structurally diverse array of products that hold promise in the context of natural product synthesis.
Co-reporter:Stephen T. Heller;Erica E. Schultz ; Richmond Sarpong
Angewandte Chemie 2012 Volume 124( Issue 33) pp:8429-8433
Publication Date(Web):
DOI:10.1002/ange.201203976
Co-reporter:Stephen T. Heller;Erica E. Schultz ; Richmond Sarpong
Angewandte Chemie International Edition 2012 Volume 51( Issue 33) pp:8304-8308
Publication Date(Web):
DOI:10.1002/anie.201203976
Co-reporter:Laura C. Miller and Richmond Sarpong
Chemical Society Reviews 2011 vol. 40(Issue 9) pp:4550-4562
Publication Date(Web):31 May 2011
DOI:10.1039/C1CS15069C
Methods that furnish enantioenriched products are crucial in modern organic synthesis. An underutilized strategy to arrive at enantioenriched products is to perform divergent reactions on racemic mixtures, where each enantiomer of the starting material reacts with a single chiral reagent to furnish two separable, non-enantiomeric products that are enantioenriched. Stereodivergent, regiodivergent and structurally divergent reactions on racemic mixtures are discussed in this tutorial review.
Co-reporter:Daniel F. Fischer
Journal of the American Chemical Society 2010 Volume 132(Issue 17) pp:5926-5927
Publication Date(Web):April 13, 2010
DOI:10.1021/ja101893b
The total synthesis of the Lycopodium alkaloid complanadine A, which is an unsymmetrical dimer of lycodine, was achieved by exploiting a common tetracyclic precursor. Key to the success of the synthesis was the development of a late-stage site-selective C−H functionalization of a pyridine moiety to arrive at a key boronic ester intermediate.
Co-reporter:Jocelyn M. Gruver ; Scott P. West ; David B. Collum
Journal of the American Chemical Society 2010 Volume 132(Issue 38) pp:13212-13213
Publication Date(Web):September 7, 2010
DOI:10.1021/ja106852n
The structure of a unique C,N-chelated dilithio dianion has been established as a solvated monomeric species using a combination of NMR and computational techniques. The highly ordered structure of the dianion may be important in its reactivity in an oxidative C−N bond-forming process.
Co-reporter:Alison R. Hardin Narayan and Richmond Sarpong
Green Chemistry 2010 vol. 12(Issue 9) pp:1556-1559
Publication Date(Web):10 Aug 2010
DOI:10.1039/C0GC00198H
Hetero-cycloisomerization reactions of propargylic alcohol derivatives leading to indolizines have been demonstrated to proceed in the presence of water alone. This stands as a significant advance over the previous methods using Pt, Cu or Ag salts paired with ligands in organic solvents such as benzene, acetonitrile or methylene chloride.
Co-reporter:Stephen T. Heller and Richmond Sarpong
Organic Letters 2010 Volume 12(Issue 20) pp:4572-4575
Publication Date(Web):September 21, 2010
DOI:10.1021/ol1018882
Imidazole carbamates and ureas were found to be chemoselective esterification and amidation reagents. A wide variety of carboxylic acids were converted to their ester or amide analogues by a simple synthetic procedure in high yields.
Co-reporter:Andrew P. Marcus and Richmond Sarpong
Organic Letters 2010 Volume 12(Issue 20) pp:4560-4563
Publication Date(Web):September 15, 2010
DOI:10.1021/ol1018536
The tetracyclic framework of the tetrapetalone A aglycon has been secured through synthesis. A reductive pyrrole alkylation enables the formation of a key tetrasubstituted carbon stereocenter, and the tetramic acid portion of the molecule can be accessed through silicon or boronic ester conjugate addition to an ene-lactam.
Co-reporter:Felipe de Jesus Cortez and Richmond Sarpong
Organic Letters 2010 Volume 12(Issue 7) pp:1428-1431
Publication Date(Web):March 1, 2010
DOI:10.1021/ol902959v
A Ga(III)-catalyzed cycloisomerization reaction provides expedient access to a benzannulated cycloheptadiene bearing a cyano group, which has been applied to the syntheses of several icetexane diterpenoids including icetexone and epi-icetexone. Key to the synthesis is a novel in situ generated diazene rearrangement.
Co-reporter:Vishnumaya Bisai and Richmond Sarpong
Organic Letters 2010 Volume 12(Issue 11) pp:2551-2553
Publication Date(Web):May 4, 2010
DOI:10.1021/ol100823t
A methoxypyridine serves as a masked pyridone in a concise synthesis of the Lycopodium alkaloid lycoposerramine R, which has been prepared for the first time. The key step of the synthesis is the use of an Eschenmoser Claisen rearrangement to forge a key quaternary carbon center.
Co-reporter:Alison R. Hardin Narayan;Eric M. Simmons
European Journal of Organic Chemistry 2010 Volume 2010( Issue 19) pp:3553-3567
Publication Date(Web):
DOI:10.1002/ejoc.201000247
Abstract
Since their isolation by Kobayashi and co-workers, the cortistatins have captured the attention both of the synthetic chemistry community and of researchers interested in exploiting the potent anti-angiogenic activity of these natural products. The unique rearranged steroidal cortistatin core has become the target of numerous synthetic efforts, which are detailed herein.
Co-reporter:Eric M. Simmons, Alison R. Hardin-Narayan, Xuelei Guo, Richmond Sarpong
Tetrahedron 2010 66(26) pp: 4696-4700
Publication Date(Web):
DOI:10.1016/j.tet.2010.01.030
Co-reporter:Scott P. West, Alakesh Bisai, Andrew D. Lim, Raja R. Narayan and Richmond Sarpong
Journal of the American Chemical Society 2009 Volume 131(Issue 31) pp:11187-11194
Publication Date(Web):July 10, 2009
DOI:10.1021/ja903868n
The formation of carbon−nitrogen (C−N) bonds is a fundamental bond construction in organic synthesis and is indispensable for the synthesis of alkaloid natural products. In the context of the synthesis of the architecturally complex Lycopodium alkaloid lyconadin A, we have discovered a highly efficient oxidative C−N bond forming reaction that relies on the union of a nitrogen anion and a carbon anion. Empirical evidence amassed during our synthetic studies suggests that the mechanism of the C−N bond forming process encompasses polar as well as radical processes. Herein, we present our study of this novel C−N bond forming reaction and its application to the enantioselective total synthesis of lyconadin A and related derivatives.
Co-reporter:Kimberly K. Larson
Journal of the American Chemical Society 2009 Volume 131(Issue 37) pp:13244-13245
Publication Date(Web):September 1, 2009
DOI:10.1021/ja9063487
Total synthesis of the Galbulimima alkaloid G. B. 13 was achieved utilizing a functionalized pyridine moiety as a piperidine surrogate. Key to the success of the synthesis was the development of an unprecedented rhodium-catalyzed 1,2-addition of an arylboronic ester into an unactivated ketone.
Co-reporter:Eric M. Simmons and Richmond Sarpong
Natural Product Reports 2009 vol. 26(Issue 9) pp:1195-1217
Publication Date(Web):25 Jun 2009
DOI:10.1039/B908984E
Covering: up to 2009
Co-reporter:Jessica L. Wood, Brian G. Pujanauski and Richmond Sarpong
Organic Letters 2009 Volume 11(Issue 14) pp:3128-3131
Publication Date(Web):June 15, 2009
DOI:10.1021/ol9010008
A general approach to the tetracyclic core of the neomangicol natural products via a late-stage indene alkylation reaction is presented. This strategy sets the stage for access to the neomangicol family and, in addition, provides a potential biogenetically inspired entry to the mangicol natural products.
Co-reporter:Jenna L. Jeffrey and Richmond Sarpong
Organic Letters 2009 Volume 11(Issue 23) pp:5450-5453
Publication Date(Web):November 10, 2009
DOI:10.1021/ol902141z
A Pd-catalyzed Larock annulation provides expedient access to a subset of resveratrol-derived natural products. The reported approach resulted in the structural revision of an intermediate en route to the natural product pauciflorol F, the total synthesis of which proceeded in two steps from the requisite pentannulation product.
Co-reporter:LauraC. Miller;J.Maina Ndungu
Angewandte Chemie International Edition 2009 Volume 48( Issue 13) pp:2398-2402
Publication Date(Web):
DOI:10.1002/anie.200806154
Co-reporter:Jenna L. Jeffrey, Richmond Sarpong
Tetrahedron Letters 2009 50(17) pp: 1969-1972
Publication Date(Web):
DOI:10.1016/j.tetlet.2009.02.067
Co-reporter:LauraC. Miller;J.Maina Ndungu
Angewandte Chemie 2009 Volume 121( Issue 13) pp:2434-2438
Publication Date(Web):
DOI:10.1002/ange.200806154
Co-reporter:EricM. Simmons;AlisonR. Hardin;Xuelei Guo
Angewandte Chemie International Edition 2008 Volume 47( Issue 35) pp:6650-6653
Publication Date(Web):
DOI:10.1002/anie.200802203
Co-reporter:AndrewP. Marcus;AmyS. Lee;RebeccaL. Davis;DeanJ. Tantillo
Angewandte Chemie International Edition 2008 Volume 47( Issue 34) pp:6379-6383
Publication Date(Web):
DOI:10.1002/anie.200801542
Co-reporter:EricM. Simmons;AlisonR. Hardin;Xuelei Guo
Angewandte Chemie 2008 Volume 120( Issue 35) pp:6752-6755
Publication Date(Web):
DOI:10.1002/ange.200802203
Co-reporter:Amy M. Hamlin, Jessica K. Kisunzu and Richmond Sarpong
Organic & Biomolecular Chemistry 2014 - vol. 12(Issue 12) pp:NaN1860-1860
Publication Date(Web):2014/02/03
DOI:10.1039/C3OB42541J
Within the diterpenoid alkaloid family of natural products, the hetidine and hetisine structural types have been the targets of a number of synthetic studies. Various strategies have been pursued to access the azacyclic moiety of these natural products as well as the characteristic [2.2.2] bicyclic structural motif. This perspective article examines the different disconnections and approaches that have been applied to the synthesis of these natural products to date.
Co-reporter:Jenna L. Jeffrey and Richmond Sarpong
Chemical Science (2010-Present) 2013 - vol. 4(Issue 11) pp:NaN4106-4106
Publication Date(Web):2013/07/04
DOI:10.1039/C3SC51420J
Increasing interest in C(sp3)–H bond functionalization has led to a multitude of recent advances in intramolecular C(sp3)–H amination. Direct, intramolecular C(sp3)–N bond-forming processes provide expedient access to a range of azacycles without the need for prefunctionalized amine precursors such as aminoaldehydes, aminoalkyl halides or aminoalkenes. Some of these methods have been successfully applied to the synthesis of complex natural products. This Perspective provides a historical context for these methods and describes recent contributions, as well as the remaining challenges to intramolecular C(sp3)–H amination.
Co-reporter:Eduardo V. Mercado-Marin and Richmond Sarpong
Chemical Science (2010-Present) 2015 - vol. 6(Issue 8) pp:NaN5052-5052
Publication Date(Web):2015/06/18
DOI:10.1039/C5SC01977J
A unified strategy for the synthesis of congeners of the prenylated indole alkaloids is presented. This strategy has yielded the first synthesis of the natural product (−)-17-hydroxy-citrinalin B as well as syntheses of (+)-stephacidin A and (+)-notoamide I. An enolate addition to an in situ generated isocyanate was utilized in forging a key bicyclo[2.2.2]diazaoctane moiety, and in this way connected the two structural classes of the prenylated indole alkaloids through synthesis.
Co-reporter:Gary M. Gallego and Richmond Sarpong
Chemical Science (2010-Present) 2012 - vol. 3(Issue 4) pp:NaN1342-1342
Publication Date(Web):2012/01/17
DOI:10.1039/C2SC01068B
Aryl pinacolboronic esters, which are robust and easily handled boronic acid derivatives, effectively add in an intramolecular 1,2 fashion into unactivated ketone groups in the presence of the rhodium complexes [Rh(cod)(MeCN)2]BF4 and a tertiary amine base or [Rh(cod)(OH)]2 and bisphosphine ligands. The latter set of conditions has been utilized in the enantioselective synthesis of indanols bearing tertiary alcohol groups. The overall transformation serves as a complement to the use of boronic acids as well as traditional nucleophiles such as Grignards, zinc reagents and lithium reagents for enantioselective, intramolecular additions to unactivated ketones, especially those additions which require nucleophilic partners that need to be handled over multiple steps.
Co-reporter:Laura C. Miller and Richmond Sarpong
Chemical Society Reviews 2011 - vol. 40(Issue 9) pp:NaN4562-4562
Publication Date(Web):2011/05/31
DOI:10.1039/C1CS15069C
Methods that furnish enantioenriched products are crucial in modern organic synthesis. An underutilized strategy to arrive at enantioenriched products is to perform divergent reactions on racemic mixtures, where each enantiomer of the starting material reacts with a single chiral reagent to furnish two separable, non-enantiomeric products that are enantioenriched. Stereodivergent, regiodivergent and structurally divergent reactions on racemic mixtures are discussed in this tutorial review.
Co-reporter:Alison R. Hardin Narayan and Richmond Sarpong
Organic & Biomolecular Chemistry 2012 - vol. 10(Issue 1) pp:NaN78-78
Publication Date(Web):2011/09/20
DOI:10.1039/C1OB06423A
Indolizinones are under-explored N-heterocycles that react with exquisite chemo- and stereoselectivity. An exploration of the fundamental reactivity of these azabicycles demonstrates the potential to relay stereochemical information from the ring-fusion to newly formed stereocenters on the bicyclic core. The indolizinone diene undergoes selective hydrogenation and readily participates in Diels–Alder cycloadditions as well as ene reactions. The vinylogous amide embedded in the five-membered ring is resistant to reaction when the diene is in place. However, removal of the diene allows for diastereoselective hydrogenation of, and 1,4-additions to, the vinylogous amide. These fundamental reactions with indolizinones have provided a structurally diverse array of products that hold promise in the context of natural product synthesis.