MRC Laboratory of Molecular Biology, Cambridge, UK.
The Francis Crick Institute, London, UK.
Nat Microbiol. 2022 Oct;7(10):1686-1701. doi: 10.1038/s41564-022-01206-9. Epub 2022 Sep 19.
During bacterial cell division, filaments of tubulin-like FtsZ form the Z-ring, which is the cytoplasmic scaffold for divisome assembly. In Escherichia coli, the actin homologue FtsA anchors the Z-ring to the membrane and recruits divisome components, including bitopic FtsN. FtsN regulates the periplasmic peptidoglycan synthase FtsWI. To characterize how FtsA regulates FtsN, we applied electron microscopy to show that E. coli FtsA forms antiparallel double filaments on lipid monolayers when bound to the cytoplasmic tail of FtsN. Using X-ray crystallography, we demonstrate that Vibrio maritimus FtsA crystallizes as an equivalent double filament. We identified an FtsA-FtsN interaction site in the IA-IC interdomain cleft of FtsA using X-ray crystallography and confirmed that FtsA forms double filaments in vivo by site-specific cysteine cross-linking. FtsA-FtsN double filaments reconstituted in or on liposomes prefer negative Gaussian curvature, like those of MreB, the actin-like protein of the elongasome. We propose that curved antiparallel FtsA double filaments together with treadmilling FtsZ filaments organize septal peptidoglycan synthesis in the division plane.
在细菌细胞分裂过程中,类似于微管蛋白的 FtsZ 纤维形成 Z 环,它是分裂体组装的细胞质支架。在大肠杆菌中,肌动蛋白同源物 FtsA 将 Z 环锚定在膜上,并招募分裂体成分,包括双拓扑结构的 FtsN。FtsN 调节周质肽聚糖合成酶 FtsWI。为了研究 FtsA 如何调节 FtsN,我们应用电子显微镜显示,当与 FtsN 的细胞质尾巴结合时,大肠杆菌 FtsA 在脂质单层上形成平行的双纤维。我们通过 X 射线晶体学证明,海洋弧菌 FtsA 结晶为等效的双纤维。我们使用 X 射线晶体学在 FtsA 的 IA-IC 结构域裂缝中鉴定出一个 FtsA-FtsN 相互作用位点,并通过特异性半胱氨酸交联证实 FtsA 在体内形成双纤维。在脂质体中或在脂质体上重建的 FtsA-FtsN 双纤维优先具有负高斯曲率,类似于伸长体的肌动蛋白样蛋白 MreB。我们提出,弯曲的平行 FtsA 双纤维与 FtsZ 纤维的 treadmilling 一起组织隔膜肽聚糖在分裂平面上的合成。