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丝氨酸/苏氨酸激酶依赖性的肽聚糖水解酶 CwlA 磷酸化调控其输出并调节艰难梭菌的细胞分裂。

Ser/Thr Kinase-Dependent Phosphorylation of the Peptidoglycan Hydrolase CwlA Controls Its Export and Modulates Cell Division in Clostridioides difficile.

机构信息

Laboratoire Pathogénese des Bactéries Anaérobies, Institut Pasteur, UMR CNRS 2001, Université de Paris, Paris, France.

Université Paris-Saclay, INRAE, AgroParisTech, Micalis Institute, Jouy-en-Josas, France.

出版信息

mBio. 2021 May 18;12(3):e00519-21. doi: 10.1128/mBio.00519-21.

Abstract

Cell growth and division require a balance between synthesis and hydrolysis of the peptidoglycan (PG). Inhibition of PG synthesis or uncontrolled PG hydrolysis can be lethal for the cells, making it imperative to control peptidoglycan hydrolase (PGH) activity. The synthesis or activity of several key enzymes along the PG biosynthetic pathway is controlled by the Hanks-type serine/threonine kinases (STKs). In Gram-positive bacteria, inactivation of genes encoding STKs is associated with a range of phenotypes, including cell division defects and changes in cell wall metabolism, but only a few kinase substrates and associated mechanisms have been identified. We previously demonstrated that STK-PrkC plays an important role in cell division, cell wall metabolism, and resistance to antimicrobial compounds in the human enteropathogen In this work, we characterized a PG hydrolase, CwlA, which belongs to the NlpC/P60 family of endopeptidases and hydrolyses cross-linked PG between daughter cells to allow cell separation. We identified CwlA as the first PrkC substrate in We demonstrated that PrkC-dependent phosphorylation inhibits CwlA export, thereby controlling hydrolytic activity in the cell wall. High levels of CwlA at the cell surface led to cell elongation, whereas low levels caused cell separation defects. Thus, we provided evidence that the STK signaling pathway regulates PGH homeostasis to precisely control PG hydrolysis during cell division. Bacterial cells are encased in a PG exoskeleton that helps to maintain cell shape and confers physical protection. To allow bacterial growth and cell separation, PG needs to be continuously remodeled by hydrolytic enzymes that cleave PG at critical sites. How these enzymes are regulated remains poorly understood. We identify a new PG hydrolase involved in cell division, CwlA, in the enteropathogen Lack or accumulation of CwlA at the bacterial surface is responsible for a division defect, while its accumulation in the absence of PrkC also increases susceptibility to antimicrobial compounds targeting the cell wall. CwlA is a substrate of the kinase PrkC in PrkC-dependent phosphorylation controls the export of CwlA, modulating its levels and, consequently, its activity in the cell wall. This work provides a novel regulatory mechanism by STK in tightly controlling protein export.

摘要

细胞的生长和分裂需要在肽聚糖(PG)的合成和水解之间保持平衡。PG 合成的抑制或不受控制的 PG 水解可能对细胞是致命的,因此必须控制肽聚糖水解酶(PGH)的活性。PG 生物合成途径中的几个关键酶的合成或活性受汉克斯型丝氨酸/苏氨酸激酶(STK)的控制。在革兰氏阳性菌中,编码 STK 的基因失活与一系列表型相关,包括细胞分裂缺陷和细胞壁代谢变化,但只有少数激酶底物和相关机制已被确定。我们之前证明 STK-PrkC 在人类肠道病原体的细胞分裂、细胞壁代谢和对抗抗菌化合物的抗性中发挥重要作用。在这项工作中,我们对 PG 水解酶 CwlA 进行了表征,CwlA 属于 NlpC/P60 家族的内切肽酶,可水解子细胞之间的交联 PG,从而促进细胞分离。我们将 CwlA 鉴定为 PrkC 的第一个底物。我们证明 PrkC 依赖性磷酸化抑制 CwlA 输出,从而控制细胞壁中的水解活性。在细胞表面高水平的 CwlA 导致细胞伸长,而低水平的 CwlA 导致细胞分离缺陷。因此,我们提供了证据表明 STK 信号通路调节 PGH 动态平衡,以在细胞分裂过程中精确控制 PG 水解。细菌细胞被包裹在 PG 外壳中,有助于维持细胞形状并提供物理保护。为了允许细菌生长和细胞分离,PG 需要通过在关键部位切割 PG 的水解酶不断重塑。这些酶是如何被调节的仍然知之甚少。我们在肠道病原体中发现了一种参与细胞分裂的新 PG 水解酶 CwlA。在细菌表面缺乏或积累 CwlA 会导致分裂缺陷,而在没有 PrkC 的情况下积累 CwlA 也会增加对抗细胞壁靶向抗菌化合物的敏感性。CwlA 是激酶 PrkC 在 的底物。PrkC 依赖性磷酸化控制 CwlA 的输出,调节其在细胞壁中的水平和活性。这项工作提供了一种新的调节机制,通过 STK 严格控制蛋白质输出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96f0/8262956/1e68aed86a3a/mbio.00519-21-f001.jpg

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