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Tianyuan Zhang

Publications and source records attributed to Tianyuan Zhang.

10 recordsLinked to original sources

Structure-activity relationships for a novel series of thiazolyl phenyl ether derivatives exhibiting potent and selective acetyl-CoA carboxylase 2 inhibitory activity.

Structure-activity relationships for a recently discovered thiazolyl phenyl ether series of acetyl-CoA carboxylase (ACC) inhibitors were investigated. Preliminary efforts to optimize the series through modification of the distal aryl ether moiety of the lead scaffold resulted in the identification of compounds exhibiting low-nanomolar potency and isozyme-selective ACC2 activity.

Acetyl-CoA Carboxylase↗

Synthesis and structure-activity relationships of N-{3-[2-(4-alkoxyphenoxy)thiazol-5-yl]-1- methylprop-2-ynyl}carboxy derivatives as selective acetyl-CoA carboxylase 2 inhibitors.

A structurally novel acetyl-CoA carboxylase (ACC) inhibitor is identified from high-throughput screening. A preliminary structure-activity relationship study led to the discovery of potent dual ACC1/ACC2 and ACC2 selective inhibitors against human recombinant ACC1 and ACC2. Selective ACC2 inhibitors exhibited IC50<20 nM and >1000-fold selectivity against ACC1. (S)-Enantiomer 9p exhibited high ACC2 activity and lowered muscle malonyl-CoA dose-dependently in acute rodent studies, whereas (R)-enantiomer 9o was weak and had no effect on the malonyl-CoA level.

Acetyl-CoA Carboxylase↗

Expression, purification, and bioactivity of human tumstatin from Escherichia coli.

Tumstatin is a M(r) 28,000 C-terminal NC1 fragment of type alpha3 (IV) collagen that inhibits pathological angiogenesis and suppresses proliferation of endothelial cells and growth of tumors. We report here high cytoplasmic expression of recombinant human tumstatin in Escherichia coli and its purification, in vitro refolding, and inhibitory activity analysis. Human tumstatin was expressed in the bacterial cytoplasm as an insoluble N-terminal polyhistidine tagged protein, which accounted for more than 30% of total bacterial protein in BL21 (DE3) cells. After extraction and solubilization in guanidine-HCl, recombinant protein was purified to homogeneity using a simple one-step Ni(2+)-chelate affinity chromatography and then refolded by dialysis against acidic pH buffers with gradually decreasing concentrations of denaturant. The renatured recombinant tumstatin could specifically inhibit endothelial cell proliferation in a dose-dependent manner, and suppress bFGF-induced angiogenesis in chick embryo chorioallantoic membrane and tumor growth in mouse B16 melanoma xenograft models.

Animals↗

Structure-based optimization of MurF inhibitors.

The D-Ala-D-Ala adding enzyme (MurF) from Streptococcus pneumoniae catalyzes the ATP-dependent formation of the UDP-MurNAc-pentapeptide, a critical component of the bacterial cell wall. MurF is a potential target for antibacterial design because it is unique to bacteria and performs an essential non-redundant function in the bacterial cell. The recent discovery and subsequent cocrystal structure determination of MurF in complex with a new class of inhibitors served as a catalyst to begin a medicinal chemistry program aimed at improving their potency. We report here a multidisciplinary approach to this effort that allowed for rapid generation of cocrystal structures, thereby providing the crystallographic information critical for driving the inhibitor optimization process. This effort resulted in the discovery of low-nanomolar inhibitors of this bacterial enzyme.

Crystallization↗

Expression and purification of human endostatin from Hansenula polymorpha A16.

Endostatin (EDN), an endogenous angiogenesis inhibitor of 20 kDa, was originally isolated from the supernatant of culture murine hemangioendothelioma cell line. Interest in EDN arises from its therapeutic potential as anti-tumor and anti-angiogenesis agents. However, it is difficult to obtain sufficient quantities of native EDN from its natural resources. We report here the construction of a pMIRH-type vector pLRG29 by introducing the 25s rDNA of Hansenua wingei and the Km(R) gene into the YIp vector pSML12 and the EDN expression vector pLRG-EDN by cloning the human EDN cDNA into pLRG29. Human EDN was expressed in Hansenula polymorpha (H.p.) A16 (pLRG-EDN) as a secreted soluble protein. The yield of the secreted EDN was 65 mg/L in shake flask. The secreted EDN was purified to a purity of 98 % by the use of SP Sepharose FF ion-exchange chromatography and Sepharose-heparin Hi Trap affinity chromatography. The MTT and chicken embryo chorioallantoic membrane assay demonstrated that the human EDN produced from H. polymorpha inhibited in vitro the proliferation of human umbilical vein endothelial cells and in vivo the neovascularization induced by bFGF.

Animals↗

Novel inhibitors of bacterial protein synthesis: structure-activity relationships for 1,8-naphthyridine derivatives incorporating position 3 and 4 variants.

Structure-activity relationships for a recently discovered novel ribosome inhibitor (NRI) class of antibacterials were investigated. Preliminary efforts to optimize protein synthesis inhibitory activity of the series through modification of positions 3 and 4 of the naphthyridone lead template resulted in the identification of several biochemically potent analogues. A lack of corresponding whole cell antibacterial activity is thought to be a consequence of poor cellular penetration as evidenced by the enhancement of activity observed for a lead analogue tested in the presence of a cell permeabilizing agent.

Anti-Bacterial Agents↗

Structure-activity relationships of novel potent MurF inhibitors.

A novel class of MurF inhibitors was discovered and structure-activity relationship studies have led to several potent compounds with IC(50)=22 approximately 70 nM. Unfortunately, none of these potent MurF inhibitors exhibited significant antibacterial activity even in the presence of bacterial cell permeabilizers.

Bacterial Proteins↗

Identification of a monoacid-based, cell permeable, selective inhibitor of protein tyrosine phosphatase 1B.

Monoacid-based PTP1B inhibitors with improved physiochemical properties have been investigated. A (2-hydroxy-phenoxy) acetic acid-based phosphotyrosyl mimetic has been linked with an optimized second arylphosphate binding site ligand to produce compound 20 with low micromolar potency against PTP1B, good selectivity over TCPTP (20-fold) and high cell permeability in the Caco-2 system.

Catalytic Domain↗

[Cloning and expression of human canstatin and its purification and bioactivity].

Total RNA was extracted from placenta umbilical tissue and the canstatin cDNA was amplified from total RNA by net-RT-PCR technique. The amplified cDNA was cloned into pSP72 and sequenced. The canstatin cDNA was cut down from pSP72C with BamH I / Nde I and ligated into the vector pET-3c. The resultant plasmid pETC was then transformed into E. coli BL21 (DE3). The canstatin gene was efficiently expressed after IPTG induction as a 25 kD band on SDS-PAGE. The expressed product constituted approximately 27.9% of the total bacterial proteins estimated by densitometry and existed mainly as inclusion body. The inclusion bodies were washed, lysed, refolded and purified on the Sephadex G-75 gel filtration column to a purity of 91.4%. CAM assay showed that 10 microg purified canstatin is enough to inhibit the angiogenesis of chichen embryo microcapillary vessel.

Angiogenesis Inhibitors↗