Navarro Paula P, Vettiger Andrea, Hajdu Roman, Ananda Virly Y, López-Tavares Alejandro, Schmid Ernst W, Walter Johannes C, Loose Martin, Chao Luke H, Bernhardt Thomas G
bioRxiv. 2025 Apr 2:2025.04.02.646830. doi: 10.1101/2025.04.02.646830.
A multi-protein system called the divisome promotes bacterial division. This apparatus synthesizes the peptidoglycan (PG) cell wall layer that forms the daughter cell poles and protects them from osmotic lysis. In the model Gram-negative bacterium , PG synthases called class A penicillin-binding proteins (aPBPs) have been proposed to play crucial roles in division. However, there is limited experimental support for aPBPs playing a specialized role in division that is distinct from their general function in the expansion and fortification of the PG matrix. Here, we present cryogenic electron tomography data indicating that the aPBP-type enzyme PBP1b is required to produce a wedge-like density of PG at the division site. Furthermore, atomic force and live cell microscopy showed that loss of this structure weakens the division site and renders it susceptible to lysis. Surprisingly, we found that the lipoprotein activator LpoB needed to promote the general function of PBP1b was not required for normal division site architecture or its integrity. Additionally, we show that of the two PBP1b isoforms produced in cells, it is the one with an extended cytoplasmic N-terminus that functions in division, likely via recruitment by the FtsA component of the divisome. Altogether, our results demonstrate that PBP1b plays a specialized, LpoB-independent role in cell division involving the biogenesis of a PG structure that prevents osmotic rupture. The conservation of aPBPs with extended cytoplasmic N-termini suggests that other Gram-negative bacteria may use similar mechanisms to reinforce their division site.
一种称为分裂体的多蛋白系统促进细菌分裂。该装置合成肽聚糖(PG)细胞壁层,形成子细胞极并保护它们免受渗透裂解。在模式革兰氏阴性菌中,已提出称为A类青霉素结合蛋白(aPBPs)的PG合成酶在分裂中起关键作用。然而,关于aPBPs在分裂中发挥与它们在PG基质扩展和强化中的一般功能不同的特殊作用,实验支持有限。在这里,我们展示了低温电子断层扫描数据,表明aPBP型酶PBP1b是在分裂位点产生楔形PG密度所必需的。此外,原子力显微镜和活细胞显微镜显示,这种结构的缺失会削弱分裂位点并使其易于裂解。令人惊讶的是,我们发现促进PBP1b一般功能所需的脂蛋白激活剂LpoB对于正常分裂位点结构或其完整性并非必需。此外,我们表明,细胞中产生的两种PBP1b同工型中,是具有延长的细胞质N末端的那种在分裂中起作用,可能是通过分裂体的FtsA组分募集。总之,我们的结果表明,PBP1b在细胞分裂中发挥特殊的、不依赖LpoB的作用,涉及一种防止渗透破裂的PG结构的生物合成。具有延长的细胞质N末端的aPBPs的保守性表明,其他革兰氏阴性细菌可能使用类似的机制来加强它们的分裂位点。