Department of Biology, University of Marburg, Marburg, Germany.
Institute of General Microbiology, Kiel University, Kiel, Germany.
Nat Commun. 2024 Sep 2;15(1):7616. doi: 10.1038/s41467-024-51790-z.
Curved cell shapes are widespread among bacteria and important for cellular motility, virulence and fitness. However, the underlying morphogenetic mechanisms are still incompletely understood. Here, we identify an outer-membrane protein complex that promotes cell curvature in the photosynthetic species Rhodospirillum rubrum. We show that the R. rubrum porins Por39 and Por41 form a helical ribbon-like structure at the outer curve of the cell that recruits the peptidoglycan-binding lipoprotein PapS, with PapS inactivation, porin delocalization or disruption of the porin-PapS interface resulting in cell straightening. We further demonstrate that porin-PapS assemblies act as molecular cages that entrap the cell elongation machinery, thus biasing cell growth towards the outer curve. These findings reveal a mechanistically distinct morphogenetic module mediating bacterial cell shape. Moreover, they uncover an unprecedented role of outer-membrane protein patterning in the spatial control of intracellular processes, adding an important facet to the repertoire of regulatory mechanisms in bacterial cell biology.
弯曲的细胞形状在细菌中广泛存在,对细胞运动性、毒力和适应性很重要。然而,其潜在的形态发生机制仍不完全清楚。在这里,我们鉴定了一种外膜蛋白复合物,它可以促进光合生物红螺菌(Rhodospirillum rubrum)的细胞弯曲。我们表明,R. rubrum 的 Por39 和 Por41 孔蛋白形成一个螺旋带状结构,位于细胞的外曲处,募集肽聚糖结合脂蛋白 PapS,PapS 失活、孔蛋白定位或破坏孔蛋白-PapS 界面会导致细胞变直。我们进一步证明,孔蛋白-PapS 组装体充当分子笼,捕获细胞伸长机制,从而使细胞生长偏向外曲。这些发现揭示了一种介导细菌细胞形状的机制不同的形态发生模块。此外,它们揭示了外膜蛋白模式在细胞内过程空间控制中的前所未有的作用,为细菌细胞生物学的调控机制增加了一个重要方面。