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酰基转移酶 3 蛋白在细菌细胞表面修饰中的多种功能。

Diverse functions for acyltransferase-3 proteins in the modification of bacterial cell surfaces.

机构信息

Department of Biology, University of York, Heslington, UK.

York Biomedical Institute, University of York, Heslington, UK.

出版信息

Microbiology (Reading). 2022 Mar;168(3). doi: 10.1099/mic.0.001146.

Abstract

The acylation of sugars, most commonly via acetylation, is a widely used mechanism in bacteria that uses a simple chemical modification to confer useful traits. For structures like lipopolysaccharide, capsule and peptidoglycan, that function outside of the cytoplasm, their acylation during export or post-synthesis requires transport of an activated acyl group across the membrane. In bacteria this function is most commonly linked to a family of integral membrane proteins - acyltransferase-3 (AT3). Numerous studies examining production of diverse extracytoplasmic sugar-containing structures have identified roles for these proteins in -acylation. Many of the phenotypes conferred by the action of AT3 proteins influence host colonisation and environmental survival, as well as controlling the properties of biotechnologically important polysaccharides and the modification of antibiotics and antitumour drugs by Actinobacteria. Herein we present the first systematic review, to our knowledge, of the functions of bacterial AT3 proteins, revealing an important protein family involved in a plethora of systems of importance to bacterial function that is still relatively poorly understood at the mechanistic level. By defining and comparing this set of functions we draw out common themes in the structure and mechanism of this fascinating family of membrane-bound enzymes, which, due to their role in host colonisation in many pathogens, could offer novel targets for the development of antimicrobials.

摘要

糖的酰化作用,最常见的是乙酰化,是细菌中广泛使用的一种机制,它利用简单的化学修饰赋予有用的特性。对于像脂多糖、荚膜和肽聚糖这样的位于细胞质外的结构,它们在出口或合成后的酰化需要将激活的酰基基团穿过膜运输。在细菌中,这种功能最常与一组整合膜蛋白 - 酰基转移酶 3(AT3)相关联。许多研究检查了不同的细胞外糖基结构的产生,这些研究确定了这些蛋白质在 - 酰化中的作用。AT3 蛋白作用赋予的许多表型影响宿主定植和环境生存,以及控制生物技术上重要多糖的性质和放线菌对抗生素和抗肿瘤药物的修饰。在此,我们提出了迄今为止第一个关于细菌 AT3 蛋白功能的系统综述,揭示了一个涉及到许多对细菌功能重要的系统的重要蛋白家族,而这个家族在机制水平上仍然相对了解甚少。通过定义和比较这组功能,我们得出了这组迷人的膜结合酶家族的结构和机制中的共同主题,由于它们在许多病原体中宿主定植中的作用,它们可能为开发抗菌药物提供新的靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9b9/9558356/b57902551fea/mic-168-1146-g001.jpg

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