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大肠杆菌 RodA-PBP2 复合物合成肽聚糖的结构基础。

Structural basis of peptidoglycan synthesis by E. coli RodA-PBP2 complex.

机构信息

Department of Physiology and Cellular Biophysics, Columbia University Irving Medical Center, New York, NY, 10032, USA.

School of Life Sciences, University of Warwick, Coventry, CV4 7AL, UK.

出版信息

Nat Commun. 2023 Aug 24;14(1):5151. doi: 10.1038/s41467-023-40483-8.

Abstract

Peptidoglycan (PG) is an essential structural component of the bacterial cell wall that is synthetized during cell division and elongation. PG forms an extracellular polymer crucial for cellular viability, the synthesis of which is the target of many antibiotics. PG assembly requires a glycosyltransferase (GT) to generate a glycan polymer using a Lipid II substrate, which is then crosslinked to the existing PG via a transpeptidase (TP) reaction. A Shape, Elongation, Division and Sporulation (SEDS) GT enzyme and a Class B Penicillin Binding Protein (PBP) form the core of the multi-protein complex required for PG assembly. Here we used single particle cryo-electron microscopy to determine the structure of a cell elongation-specific E. coli RodA-PBP2 complex. We combine this information with biochemical, genetic, spectroscopic, and computational analyses to identify the Lipid II binding sites and propose a mechanism for Lipid II polymerization. Our data suggest a hypothesis for the movement of the glycan strand from the Lipid II polymerization site of RodA towards the TP site of PBP2, functionally linking these two central enzymatic activities required for cell wall peptidoglycan biosynthesis.

摘要

肽聚糖(PG)是细菌细胞壁的重要结构成分,在细胞分裂和伸长过程中合成。PG 形成一种细胞存活所必需的细胞外聚合物,其合成是许多抗生素的靶标。PG 组装需要糖基转移酶(GT)使用脂质 II 作为底物生成糖聚合物,然后通过转肽酶(TP)反应将其交联到现有 PG 上。一种形态、伸长、分裂和孢子形成(SEDS)GT 酶和一种 B 类青霉素结合蛋白(PBP)形成了 PG 组装所需的多蛋白复合物的核心。在这里,我们使用单颗粒冷冻电子显微镜来确定细胞伸长特异性大肠杆菌 RodA-PBP2 复合物的结构。我们将这些信息与生化、遗传、光谱和计算分析相结合,以确定脂质 II 的结合位点,并提出脂质 II 聚合的机制。我们的数据提出了一个假设,即糖链从 RodA 的脂质 II 聚合位点向 PBP2 的 TP 位点移动,从而将这两种用于细胞壁肽聚糖生物合成的核心酶活性功能连接起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a590/10449877/65aa0724eebb/41467_2023_40483_Fig1_HTML.jpg

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