Department of Biology, Massachusetts Institute of Technology, Cambridge, Massachusetts, USA.
J Bacteriol. 2023 Mar 21;205(3):e0043322. doi: 10.1128/jb.00433-22. Epub 2023 Feb 16.
Most bacteria have cell wall peptidoglycan surrounding their plasma membranes. The essential cell wall provides a scaffold for the envelope, protection against turgor pressure and is a proven drug target. Synthesis of the cell wall involves reactions that span cytoplasmic and periplasmic compartments. Bacteria carry out the last steps of cell wall synthesis along their plasma membrane. The plasma membrane in bacteria is heterogeneous and contains membrane compartments. Here, I outline findings that highlight the emerging notion that plasma membrane compartments and the cell wall peptidoglycan are functionally intertwined. I start by providing models of cell wall synthesis compartmentalization within the plasma membrane in mycobacteria, Escherichia coli, and Bacillus subtilis. Then, I revisit literature that supports a role for the plasma membrane and its lipids in modulating enzymatic reactions that synthesize cell wall precursors. I also elaborate on what is known about bacterial lateral organization of the plasma membrane and the mechanisms by which organization is established and maintained. Finally, I discuss the implications of cell wall partitioning in bacteria and highlight how targeting plasma membrane compartmentalization serves as a way to disrupt cell wall synthesis in diverse species.
大多数细菌的细胞膜周围都有细胞壁肽聚糖。细胞壁是细胞膜的支架,为细胞提供了结构支撑、抵御膨压,并已被证实是药物作用的靶点。细胞壁的合成涉及横跨细胞质和周质腔的反应。细菌在细胞膜上完成细胞壁合成的最后几步。细菌的细胞膜是不均一的,包含膜区室。在这里,我概述了一些发现,这些发现强调了一个新的观点,即细胞膜区室和细胞壁肽聚糖在功能上是相互交织的。我首先提供了分枝杆菌、大肠杆菌和枯草芽孢杆菌中细胞膜上细胞壁合成区室化的模型。然后,我重新审视了支持细胞膜及其脂质在调节合成细胞壁前体的酶反应方面发挥作用的文献。我还详细介绍了已知的细菌细胞膜的横向组织以及组织建立和维持的机制。最后,我讨论了细菌中细胞壁分隔的意义,并强调了靶向细胞膜区室化如何成为破坏不同物种细胞壁合成的一种方法。