Suppr超能文献

关于Wzy聚合酶与脂多糖O抗原生物合成的最新见解。

Recent insights into Wzy polymerases and lipopolysaccharide O-antigen biosynthesis.

作者信息

Ascari Alice, Morona Renato

机构信息

Institute for Biomedicine and Glycomics, Griffith University, Gold Coast, Queensland, Australia.

School of Biological Sciences, Department of Molecular and Biomedical Science, Research Centre for Infectious Diseases, University of Adelaide, Adelaide, Australia.

出版信息

J Bacteriol. 2025 Apr 17;207(4):e0041724. doi: 10.1128/jb.00417-24. Epub 2025 Mar 11.

Abstract

Bacteria synthesize a plethora of complex surface-associated polysaccharides which enable them to persist and thrive in distinct niches. These glycans serve an array of purposes pertaining to virulence, colonization, antimicrobial resistance, stealth, and biofilm formation. The Wzx/Wzy-dependent pathway is universally the predominant system for bacterial polysaccharide synthesis. This system is responsible for the production of lipopolysaccharide (LPS) O-antigen (Oag), enterobacterial common antigen, capsule, and exopolysaccharides, with orthologs present in both Gram-negative and Gram-positive microbes. Studies focusing principally on , , and LPS Oag synthesis have provided much of the framework underpinning the biochemical and molecular mechanism behind polysaccharide synthesis via this pathway. LPS Oag production via the Wzx/Wzy-dependent pathway occurs through the stepwise activity of multiple key biosynthetic enzymes, including primarily the polymerase, Wzy, which is responsible for the Oag assembly, and the polysaccharide co-polymerase, Wzz, which effectively modulates the length of the glycan produced. In this review, we provide a comprehensive summary of the latest genetic, structural, and mechanistic data for the main protein candidates of the Wzx/Wzy-dependent pathway, in addition to an examination of their substrate specificities. Furthermore, we have reviewed recent insights pertaining to the dynamics/kinetics of glycan synthesis by this mechanism, including the interplay of the key proteins among themselves and in complex with their substrate. Lastly, we outline key gaps in the literature and suggest future research avenues, with the aim to stimulate ongoing research into this critical pathway responsible for the production of key virulence factors for numerous debilitating and lethal pathogens.

摘要

细菌能合成大量与表面相关的复杂多糖,使其能够在不同生态位中存活并繁衍。这些聚糖具有一系列与毒力、定植、抗微生物耐药性、隐匿性和生物膜形成相关的功能。Wzx/Wzy 依赖性途径普遍是细菌多糖合成的主要系统。该系统负责脂多糖(LPS)O 抗原(Oag)、肠杆菌共同抗原、荚膜和胞外多糖的产生,在革兰氏阴性菌和革兰氏阳性菌中均存在直系同源物。主要聚焦于[此处原文缺失具体研究对象]、[此处原文缺失具体研究对象]和 LPS Oag 合成的研究,为通过该途径进行多糖合成背后的生化和分子机制提供了许多支撑框架。通过 Wzx/Wzy 依赖性途径产生 LPS Oag 是通过多种关键生物合成酶的逐步作用实现的,主要包括聚合酶 Wzy,它负责 Oag 的组装,以及多糖共聚合酶 Wzz,它有效地调节所产生聚糖的长度。在本综述中,我们除了研究其底物特异性外,还对 Wzx/Wzy 依赖性途径主要蛋白质候选物的最新遗传、结构和机制数据进行了全面总结。此外,我们还回顾了有关通过该机制进行聚糖合成的动力学/动态学的最新见解,包括关键蛋白质之间以及与底物形成复合物时的相互作用。最后,我们概述了文献中的关键空白,并提出了未来的研究途径,旨在推动对这一关键途径的持续研究,该途径负责众多使人衰弱和致命病原体关键毒力因子的产生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08f6/12004945/39f12cb97bec/jb.00417-24.f001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验