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FtsZ 侧面螺旋 H3 上的突变会破坏细胞活力,从而阻碍聚合物在脂质表面上的重组。

Mutations on FtsZ lateral helix H3 that disrupt cell viability hamper reorganization of polymers on lipid surfaces.

机构信息

Instituto de Catálisis y Petroleoquímica, c/Marie Curie 2, Cantoblanco, Madrid 28049, Spain.

Departamento de Biología, Facultad de Ciencias, Casilla 653, Santiago 1, Chile.

出版信息

Biochim Biophys Acta Biomembr. 2017 Oct;1859(10):1815-1827. doi: 10.1016/j.bbamem.2017.06.009. Epub 2017 Jun 20.

Abstract

FtsZ filaments localize at the middle of the bacterial cell and participate in the formation of a contractile ring responsible for cell division. Previous studies demonstrated that the highly conserved negative charge of glutamate 83 and the positive charge of arginine 85 located in the lateral helix H3 bend of Escherichia coli FtsZ are required for in vivo cell division. In order to understand how these lateral mutations impair the formation of a contractile ring,we extend previous in vitro characterization of these mutants in solution to study their behavior on lipid modified surfaces. We study their interaction with ZipAand look at their reorganization on the surface. We found that the dynamic bundling capacity of the mutant proteins is deficient, and this impairment increases the more the composition and spatial arrangement of the reconstituted system resembles the situation inside the cell: mutant proteins completely fail to reorganize to form higher order aggregates when bound to an E.coli lipid surface through oriented ZipA.We conclude that these surface lateral point mutations affect the dynamic reorganization of FtsZ filaments into bundles on the cell membrane, suggesting that this event is relevant for generating force and completing bacterial division.

摘要

FtsZ 丝状体定位于细菌细胞的中部,并参与形成负责细胞分裂的收缩环。先前的研究表明,大肠杆菌 FtsZ 中位于横向螺旋 H3 弯曲处的高度保守的谷氨酸 83 的负电荷和精氨酸 85 的正电荷对于体内细胞分裂是必需的。为了了解这些横向突变如何破坏收缩环的形成,我们将先前对这些突变体在溶液中的体外特性的研究扩展到研究它们在脂质修饰表面上的行为。我们研究了它们与 ZipA 的相互作用,并观察了它们在表面上的重排。我们发现突变蛋白的动态束状能力不足,而且这种损伤随着重组系统的组成和空间排列越来越类似于细胞内的情况而增加:当通过定向 ZipA 结合到大肠杆菌脂质表面时,突变蛋白完全无法重新组织形成更高阶的聚集体。我们得出结论,这些表面横向点突变影响 FtsZ 丝状体在细胞膜上动态重组成束,这表明这一事件与产生力和完成细菌分裂有关。

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