Co-reporter:Kazuhiro Higuchi, Shin Suzuki, Reeko Ueda, Norifumi Oshima, Emiko Kobayashi, Masanori Tayu, and Tomomi Kawasaki
Organic Letters 2015 Volume 17(Issue 1) pp:154-157
Publication Date(Web):December 19, 2014
DOI:10.1021/ol5033865
The asymmetric total synthesis of (−)-leuconoxine has been achieved. The desymmetrization of a prochiral diester using a chiral phosphoric acid catalyst produced a highly enantioenriched lactam with excellent yield. The ring construction featuring an intramolecular N-acyliminium cyclization and the one-step pyrrolidone formation using Bestmann’s ylide was successfully accomplished.
Co-reporter:Masanori Tayu, Takako Ishizaki, Kazuhiro Higuchi and Tomomi Kawasaki
Organic & Biomolecular Chemistry 2015 vol. 13(Issue 13) pp:3863-3865
Publication Date(Web):18 Feb 2015
DOI:10.1039/C5OB00190K
The cross-coupling of tryptamine with substituted aniline to access C3a–nitrogen-linked pyrroloindolines has been developed via the consecutive cyclization of tryptamine with DMSO/Tf2O and the substitution of 3a-pyrroloindolylthionium intermediate with aniline. The use of 2,3-dihydrotryptamine instead of aniline enabled easy access to 3a-(1-indolyl)pyrroloindoline and the concise synthesis of C3a–N1′-linked pyrroloindoline alkaloid (±)-psychotriasine was accomplished.
Co-reporter:Daigo Hayashi, Naoki Tsukioka, Yutaka Inoue, Yoshiki Matsubayashi, Toshimasa Iizuka, Kazuhiro Higuchi, Yoji Ikegami, Tomomi Kawasaki
Bioorganic & Medicinal Chemistry 2015 Volume 23(Issue 9) pp:2010-2023
Publication Date(Web):1 May 2015
DOI:10.1016/j.bmc.2015.03.017
An efficient and versatile synthesis of 5-N-acetylardeemin (1a) and sixteen 2-, 3- and 13-substituted derivatives 1b–q was achieved through Ugi three-component reaction of 3,3a,8,8a-tetrahydropyrrolo[2,3-b]indole and cyclization/epimerization. Their inhibitory activity on the drug efflux of breast cancer resistance protein (ABCG2) was evaluated by flow cytometric analysis of accumulation of Hoechst 33342 stain in Flp-In-293/ABCG2 cells. Most of the derivatives exhibited a stronger ABCG2 inhibitory effect compared with natural product 1a. The derivative 1m with a 4-tolyl substituent at the C-13 position exhibited the most potent ABCG2 inhibition. This preliminary structure–activity relationship study indicates that an electron-rich aryl moiety as the 13-substituent is key to increasing the inhibitory activity.
Co-reporter:Masanori Tayu, Kazuhiro Higuchi, Takako Ishizaki, and Tomomi Kawasaki
Organic Letters 2014 Volume 16(Issue 14) pp:3613-3615
Publication Date(Web):July 2, 2014
DOI:10.1021/ol5012373
We report a one-pot procedure for forming a dimeric pyrroloindoline framework with a thionium reagent. The cyclization of tryptamine with DMSO and Tf2O, followed by substitution with indole derivatives, produced racemic 3a-indolylpyrroloindolines. The method enables rapid access to heterodimeric pyrroloindolines as well as to homodimeric pyrroloindolines.
Co-reporter:Masanori Tayu, Kazuhiro Higuchi, Masato Inaba and Tomomi Kawasaki
Organic & Biomolecular Chemistry 2013 vol. 11(Issue 3) pp:496-502
Publication Date(Web):07 Nov 2012
DOI:10.1039/C2OB26944A
Aliphatic C–H functionalization at indole 2α-position mediated by acyloxythionium species 1 generated from sulfoxide and acid anhydride has been developed. The combination of sulfoxide and TFAA with O-, N- and C-nucleophiles enabled introduction of various substituents in a one-pot procedure. Especially on utilizing DMSO, the combination provided a practical and efficient method for the synthesis of a wide range of 2α-substituted indoles.
Co-reporter:Masanori Tayu, Takako Ishizaki, Kazuhiro Higuchi and Tomomi Kawasaki
Organic & Biomolecular Chemistry 2015 - vol. 13(Issue 13) pp:NaN3865-3865
Publication Date(Web):2015/02/18
DOI:10.1039/C5OB00190K
The cross-coupling of tryptamine with substituted aniline to access C3a–nitrogen-linked pyrroloindolines has been developed via the consecutive cyclization of tryptamine with DMSO/Tf2O and the substitution of 3a-pyrroloindolylthionium intermediate with aniline. The use of 2,3-dihydrotryptamine instead of aniline enabled easy access to 3a-(1-indolyl)pyrroloindoline and the concise synthesis of C3a–N1′-linked pyrroloindoline alkaloid (±)-psychotriasine was accomplished.
Co-reporter:Masanori Tayu, Kazuhiro Higuchi, Masato Inaba and Tomomi Kawasaki
Organic & Biomolecular Chemistry 2013 - vol. 11(Issue 3) pp:NaN502-502
Publication Date(Web):2012/11/07
DOI:10.1039/C2OB26944A
Aliphatic C–H functionalization at indole 2α-position mediated by acyloxythionium species 1 generated from sulfoxide and acid anhydride has been developed. The combination of sulfoxide and TFAA with O-, N- and C-nucleophiles enabled introduction of various substituents in a one-pot procedure. Especially on utilizing DMSO, the combination provided a practical and efficient method for the synthesis of a wide range of 2α-substituted indoles.