Centre for Bacterial Cell Biology, Institute for Cell and Molecular Biosciences, University of Newcastle, Newcastle upon Tyne, UK.
FEBS J. 2017 Mar;284(6):851-867. doi: 10.1111/febs.13959. Epub 2016 Nov 23.
During growth and propagation, a bacterial cell enlarges and subsequently divides its peptidoglycan (PG) sacculus, a continuous mesh-like layer that encases the cell membrane to confer mechanical strength and morphological robustness. The mechanism of sacculus growth, how it is regulated and how it is coordinated with other cellular processes is poorly understood. In this article, we will discuss briefly the current knowledge of how cell wall synthesis is regulated, on multiple levels, from both sides of the cytoplasmic membrane. According to the current knowledge, cytosolic scaffolding proteins connect PG synthases with cytoskeletal elements, and protein phosphorylation regulates cell wall growth in Gram-positive species. PG-active enzymes engage in multiple protein-protein interactions within PG synthesis multienzyme complexes, and some of the interactions modulate activities. PG synthesis is also regulated by central metabolism, and by PG maturation through the action of PG hydrolytic enzymes. Only now are we beginning to appreciate how these multiple levels of regulating PG synthesis enable the cell to propagate robustly with a defined cell shape under different and variable growth conditions.
在生长和繁殖过程中,细菌细胞会增大,随后分裂其肽聚糖(PG)囊泡,这是一个连续的网状层,包裹着细胞膜,赋予细胞机械强度和形态稳定性。囊泡生长的机制、如何调节以及如何与其他细胞过程相协调,这些都知之甚少。在本文中,我们将简要讨论目前关于细胞壁合成如何在多个层面上受到调节的知识,这些调节来自细胞质膜的两侧。根据目前的知识,细胞质支架蛋白将 PG 合成酶与细胞骨架元件连接起来,并且蛋白质磷酸化调节革兰氏阳性菌的细胞壁生长。PG 活性酶在 PG 合成多酶复合物内进行多种蛋白质-蛋白质相互作用,并且一些相互作用调节活性。PG 合成还受到中央代谢的调节,并且通过 PG 水解酶的作用进行 PG 成熟的调节。现在我们才开始了解这些调节 PG 合成的多个层次如何使细胞在不同和可变的生长条件下以定义的细胞形状稳健地繁殖。