Institute for Cell and Molecular Biosciences, Medical School, Newcastle University, Newcastle NE2 4HH, UK.
Mol Microbiol. 2010 Jun;76(6):1514-26. doi: 10.1111/j.1365-2958.2010.07183.x. Epub 2010 May 11.
FtsZ, the essential regulator of bacterial cell division, is a dynamic cytoskeletal protein that forms helices that condense into the Z-ring prior to division. Two small coiled-coil proteins, ZapA and ZapB, are both recruited early to the Z-ring. We show here that ZapB is recruited to the Z-ring by ZapA. A direct interaction between ZapA and ZapB is supported by bacterial two-hybrid and in vitro interaction assays. Using high-resolution 3-D reconstruction microscopy, we find that, surprisingly, ZapB is located inside the Z-ring in virtually all cells investigated. We propose a molecular model in which ZapA increases lateral interactions between FtsZ proto-filaments and ZapB mediates further stabilization of this interaction by cross-linking ZapA molecules bound to adjacent FtsZ proto-filaments. Gene deletion and complementation assays show that ZapB can mitigate cell division and Z-ring assembly defects even in the absence of ZapA, raising the possibility that ZapB stimulates Z-ring assembly by two different mechanisms.
FtsZ 是细菌细胞分裂的必需调节蛋白,它是一种动态的细胞骨架蛋白,在分裂前形成螺旋体,凝聚成 Z 环。两种小的卷曲螺旋蛋白 ZapA 和 ZapB 都被早期招募到 Z 环。我们在这里表明,ZapB 是由 ZapA 招募到 Z 环的。细菌双杂交和体外相互作用实验支持 ZapA 和 ZapB 之间的直接相互作用。使用高分辨率 3D 重建显微镜,我们发现令人惊讶的是,在几乎所有研究的细胞中,ZapB 都位于 Z 环内。我们提出了一个分子模型,其中 ZapA 增加了 FtsZ 原丝之间的侧向相互作用,而 ZapB 通过交联结合到相邻 FtsZ 原丝上的 ZapA 分子进一步稳定这种相互作用。基因缺失和互补实验表明,即使在没有 ZapA 的情况下,ZapB 也可以减轻细胞分裂和 Z 环组装缺陷,这增加了 ZapB 通过两种不同机制刺激 Z 环组装的可能性。