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沿杆状生长分枝杆菌侧壁的肽聚糖前体合成。

Peptidoglycan precursor synthesis along the sidewall of pole-growing mycobacteria.

机构信息

Molecular and Cellular Biology Graduate Program, University of Massachusetts, Amherst, United States.

Department of Microbiology, University of Massachusetts, Amherst, United States.

出版信息

Elife. 2018 Sep 10;7:e37243. doi: 10.7554/eLife.37243.

Abstract

Rod-shaped mycobacteria expand from their poles, yet d-amino acid probes label cell wall peptidoglycan in this genus at both the poles and sidewall. We sought to clarify the metabolic fates of these probes. Monopeptide incorporation was decreased by antibiotics that block peptidoglycan synthesis or l,d-transpeptidation and in an l,d-transpeptidase mutant. Dipeptides complemented defects in d-alanine synthesis or ligation and were present in lipid-linked peptidoglycan precursors. Characterizing probe uptake pathways allowed us to localize peptidoglycan metabolism with precision: monopeptide-marked l,d-transpeptidase remodeling and dipeptide-marked synthesis were coincident with mycomembrane metabolism at the poles, septum and sidewall. Fluorescent pencillin-marked d,d-transpeptidation around the cell perimeter further suggested that the mycobacterial sidewall is a site of cell wall assembly. While polar peptidoglycan synthesis was associated with cell elongation, sidewall synthesis responded to cell wall damage. Peptidoglycan editing along the sidewall may support cell wall robustness in pole-growing mycobacteria.

摘要

杆状分枝杆菌从其两极扩展,但 d-氨基酸探针在该属的两极和侧壁均标记细胞壁肽聚糖。我们试图阐明这些探针的代谢命运。单肽掺入被阻断肽聚糖合成或 l,d-转肽的抗生素和 l,d-转肽酶突变体减少。二肽补充 d-丙氨酸合成或连接的缺陷,并存在于脂质连接的肽聚糖前体中。描述探针摄取途径使我们能够精确地定位肽聚糖代谢:单肽标记的 l,d-转肽酶重塑和二肽标记的合成与分枝菌细胞膜代谢在两极、隔膜和侧壁上是一致的。荧光青霉素标记的 d,d-转肽围绕细胞周界进一步表明,分枝杆菌的侧壁是细胞壁组装的部位。虽然极性肽聚糖合成与细胞伸长有关,但侧壁合成则响应细胞壁损伤。沿着侧壁的肽聚糖编辑可能支持生长在两极的分枝杆菌的细胞壁稳健性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aeb2/6191288/b6b2d9368a6c/elife-37243-fig1.jpg

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