Zheng Liu

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Name: 刘政; Liu, Zheng
Organization: Central China Normal University , China
Department: College of Chemistry
Title: (PhD)

TOPICS

Co-reporter:Xiao-Kang Zhang, Feng Liu, William D. Fiers, Wen-Mei Sun, Jun Guo, Zheng Liu, and Courtney C. Aldrich
The Journal of Organic Chemistry April 7, 2017 Volume 82(Issue 7) pp:3432-3432
Publication Date(Web):March 10, 2017
DOI:10.1021/acs.joc.6b02801
In order to survive in a mammalian host, Mycobacterium tuberculosis (Mtb) produces aryl-capped siderophores known as the mycobactins for iron acquisition. Salicylic acid is a key building block of the mycobactin core and is synthesized by the bifunctional enzyme MbtI, which converts chorismate into isochorismate via a SN2″ reaction followed by further transformation into salicylate through a [3,3]-sigmatropic rearrangement. MbtI belongs to a family of chorismate-utilizing enzymes (CUEs) that have conserved topology and active site residues. The transition-state inhibitor 1 described by Bartlett, Kozlowski, and co-workers is the most potent reported inhibitor to date of CUEs. Herein, we disclose a concise asymmetric synthesis and the accompanying biochemical characterization of 1 along with three closely related analogues beginning from bromobenzene cis-1S,2S-dihydrodiol produced through microbial oxidation that features a series of regio- and stereoselective transformations for introduction of the C-4 hydroxy and C-6 amino substituents. The flexible synthesis enables late-stage introduction of the carboxy group and other bioisosteres at the C-1 position as well as installation of the enol–pyruvate side chain at the C-5 position.
Co-reporter:Zheng Liu, Jun Guo
Carbohydrate Research 2017 Volume 452(Volume 452) pp:
Publication Date(Web):27 November 2017
DOI:10.1016/j.carres.2017.10.006
•The development of synthetic vaccines has become very attractive in recent years due to their excellent safety profiles.•Adjuvants in synthetic vaccines are essential to ensure robust immune responses to antigens.•This short review describes recent advances in the application of NKT-cell agonists as adjuvants in synthetic vaccines.•Also highlights the important role of organic synthesis in the preparation of vaccines.NKT cells are CD1d-restricted, glycolipid antigen-reactive, immunoregulatory T lymphocytes that can serve as a bridge between the innate and adaptive immunities. NKT cells have a wide range of therapeutic application in autoimmunity, transplant biology, infectious disease, cancer, and vaccinology. Rather than triggering “danger signal” and eliciting an innate immune response, αGalCer-based NKT-cell agonist act via a unique mechanism, recruiting NKT cells which play a T helper-like role even without peptide as Th epitope. Importantly, the non-polymorphism of CD1d render glycolipid a universal helper epitope, offering the potential to simplify the vaccine construct capable of eliciting consistent immune response in different individuals. This review details recent advances in the design of synthetic vaccines using NKT-cell agonist as adjuvant, highlighting the role of organic synthesis and conjugation technique to enhance the immunological actives and to simplify the vaccine constructs.Download high-res image (236KB)Download full-size image
Co-reporter:Xu-Guang Yin, Xiang-Zhao Chen, Wen-Mei Sun, Xiao-Shan Geng, Xiao-Kang Zhang, Jian Wang, Pan-Pan Ji, Zhong-Yin Zhou, Dong Jae Baek, Guang-Fu YangZheng Liu, Jun Guo
Organic Letters 2017 Volume 19(Issue 3) pp:
Publication Date(Web):January 25, 2017
DOI:10.1021/acs.orglett.6b03591
A fully synthetic self-adjuvanting cancer vaccine candidate was constructed through covalent conjugation of invariant natural killer T (iNKT) cell ligand α-galactosylceramide (αGalCer) with sialyl Tn (STn), a representative tumor-associated carbohydrate antigen (TACA). This two-component vaccine STn-αGalCer is devoid of antigenic peptide, featuring the well-defined structure with high simplicity. STn-αGalCer showed remarkable efficacy in inducing antibody class switching from IgM to STn-specific IgG. Subtypes of IgG antibody were primarily IgG1 and IgG3.
Co-reporter:Jing-Jing Du, Xiao-Fei Gao, Ling-Ming Xin, Ze Lei, Zheng Liu, and Jun Guo
Organic Letters 2016 Volume 18(Issue 19) pp:4828-4831
Publication Date(Web):September 13, 2016
DOI:10.1021/acs.orglett.6b02288
An efficient N-linked glycosylation reaction between glycosylamines and p-nitrophenyl thioester peptides has been developed. The reaction conditions are mild and compatible with the C-terminal free carboxylic acid group and the unprotected N-linked sialyloligosaccharide. By means of this convergent strategy, a versatile N-glycopeptide fragment containing an N-terminal Thz and a C-terminal thioester was readily prepared, which is available for the synthesis of long glycopeptides and glycoproteins using the protocol of native chemical ligation.
Co-reporter:Xu-Guang Yin, Xiao-Fei Gao, Jing-Jing Du, Xiao-Kang Zhang, Xiang-Zhao Chen, Jian Wang, Ling-Ming Xin, Ze Lei, Zheng Liu, and Jun Guo
Organic Letters 2016 Volume 18(Issue 22) pp:5796-5799
Publication Date(Web):November 4, 2016
DOI:10.1021/acs.orglett.6b02568
Adipic acid diselenoester was developed as an efficient cross-linker for covalent protein conjugation with a variety of small molecular haptens, including mono- and disaccharides, peptide, fluorescence dye, and nicotine. Compared to the counterparts of N-hydroxysuccinimide (NHS) and p-nitrophenyl (PNP) linkers, the diselenoester linker demonstrates improved balance between reactivity and stability and coupling of haptens to proteins under mild conditions with high incorporation efficiency.
Glycine, N-[(9H-fluoren-9-ylmethoxy)carbonyl]-, 4-nitrophenyl ester
Glycine, N-[(9H-fluoren-9-ylmethoxy)carbonyl]-, phenyl ester
CYCLO(L-ALANYLGLYCYL-L-PROLYL-L-VALYL-L-TYROSYL)
Benzaldehyde, 4,4'-dithiobis-
1H-1,2,3-Triazole, 1-[(4-fluorophenyl)methyl]-4-phenyl-
GALACTOCEREBROSIDES
BENZALDEHYDE, 2,2'-DITHIOBIS-
norophthalamic acid
Ethanamine, 2-azido-
β-D-Glucopyranose, 2-(acetylamino)-4-O-[2-(acetylamino)-2-deoxy-β-D-glucopyranosyl]-2-deoxy-