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胞苷5'-单磷酸-假氨基糖合酶PseF的结构与功能表征:对底物识别和催化机制的分子洞察

Structural and functional characterization of the cytidine 5'-monophosphate-pseudaminic acid synthase PseF: molecular insight into substrate recognition and catalysis mechanism.

作者信息

Wahid Syeda Umme Habiba

机构信息

Department of Microbiology, University of Chittagong, Chittagong, Bangladesh.

出版信息

Adv Appl Bioinform Chem. 2017 Oct 6;10:79-88. doi: 10.2147/AABC.S139773. eCollection 2017.

Abstract

The bacterium is a human gastric pathogen that can cause a wide range of diseases, including chronic gastritis, peptic ulcer and gastric carcinoma. It is classified as a definitive (class I) human carcinogen by the International Agency for Research on Cancer. Flagella-mediated motility is essential for to initiate colonization and for the development of infection in human beings. Glycosylation of the flagellum with pseudaminic acid (Pse; 5,7-diacetamido-3,5,7,9-tetradeoxy-l-glycero-l-manno-nonulosonic acid) is essential for flagella assembly and function. The sixth step in the Pse biosynthesis pathway, activation of Pse by addition of a cytidine 5'-monophosphate (CMP) to generate CMP-Pse, is catalyzed by a metal-dependent enzyme pseudaminic acid biosynthesis protein F (PseF) using cytidine 5'-triphosphate (CTP) as a cofactor. No crystal-structural information for PseF is available. This study describes the first three-dimensional model of PseF obtained using biocomputational tools. PseF harbors an α/β-type hydrolase fold with a β-hairpin (HP) dimerization domain. Comparison of PseF with other structural homologs allowed identification of crucial residues for substrate recognition and the catalytic mechanism. This structural information would pave the way to design novel therapeutics to combat bacterial infection.

摘要

这种细菌是一种人类胃部病原体,可引发多种疾病,包括慢性胃炎、消化性溃疡和胃癌。它被国际癌症研究机构列为明确的(一类)人类致癌物。鞭毛介导的运动对于该细菌在人体内启动定植和感染发展至关重要。用假氨基糖(Pse;5,7-二乙酰氨基-3,5,7,9-四脱氧-L-甘油-L-甘露糖-壬酮糖酸)对该细菌的鞭毛进行糖基化对于鞭毛组装和功能至关重要。Pse生物合成途径的第六步,即通过添加5'-磷酸胞苷(CMP)激活Pse以生成CMP-Pse,由一种金属依赖性酶假氨基糖生物合成蛋白F(PseF)催化,使用5'-三磷酸胞苷(CTP)作为辅因子。目前尚无PseF的晶体结构信息。本研究描述了使用生物计算工具获得的首个PseF三维模型。PseF具有一个带有β-发夹(HP)二聚化结构域的α/β型水解酶折叠结构。将PseF与其他结构同源物进行比较,有助于确定底物识别和催化机制的关键残基。这一结构信息将为设计对抗细菌感染的新型疗法铺平道路。

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