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大肠杆菌胞质分裂中FtsZ C端可变区(CTV)在Z环组装及与Z环稳定剂ZapD相互作用方面的特性研究

Characterization of the FtsZ C-Terminal Variable (CTV) Region in Z-Ring Assembly and Interaction with the Z-Ring Stabilizer ZapD in E. coli Cytokinesis.

作者信息

Huang Kuo-Hsiang, Mychack Aaron, Tchorzewski Lukasz, Janakiraman Anuradha

机构信息

Department of Biology, City College of CUNY, 160 Convent Avenue, MR 526, New York, NY, United States of America.

The Graduate Center of CUNY, 365 Fifth Avenue, New York, NY, United States of America.

出版信息

PLoS One. 2016 Apr 18;11(4):e0153337. doi: 10.1371/journal.pone.0153337. eCollection 2016.

Abstract

Polymerization of a ring-like cytoskeletal structure, the Z-ring, at midcell is a highly conserved feature in virtually all bacteria. The Z-ring is composed of short protofilaments of the tubulin homolog FtsZ, randomly arranged and held together through lateral interactions. In vitro, lateral associations between FtsZ protofilaments are stabilized by crowding agents, high concentrations of divalent cations, or in some cases, low pH. In vivo, the last 4-10 amino acid residues at the C-terminus of FtsZ (the C-terminal variable region, CTV) have been implicated in mediating lateral associations between FtsZ protofilaments through charge shielding. Multiple Z-ring associated proteins (Zaps), also promote lateral interactions between FtsZ protofilaments to stabilize the FtsZ ring in vivo. Here we characterize the complementary role/s of the CTV of E. coli FtsZ and the FtsZ-ring stabilizing protein ZapD, in FtsZ assembly. We show that the net charge of the FtsZ CTV not only affects FtsZ protofilament bundling, confirming earlier observations, but likely also the length of the FtsZ protofilaments in vitro. The CTV residues also have important consequences for Z-ring assembly and interaction with ZapD in the cell. ZapD requires the FtsZ CTV region for interaction with FtsZ in vitro and for localization to midcell in vivo. Our data suggest a mechanism in which the CTV residues, particularly K380, facilitate a conformation for the conserved carboxy-terminal residues in FtsZ, that lie immediately N-terminal to the CTV, to enable optimal contact with ZapD. Further, phylogenetic analyses suggest a correlation between the nature of FtsZ CTV residues and the presence of ZapD in the β- γ-proteobacterial species.

摘要

在几乎所有细菌中,一种环状细胞骨架结构即Z环在细胞中部的聚合是一个高度保守的特征。Z环由微管蛋白同源物FtsZ的短原丝组成,这些原丝随机排列并通过侧向相互作用聚集在一起。在体外,FtsZ原丝之间的侧向结合通过拥挤剂、高浓度二价阳离子或在某些情况下通过低pH来稳定。在体内,FtsZ C末端的最后4 - 10个氨基酸残基(C末端可变区,CTV)被认为通过电荷屏蔽介导FtsZ原丝之间的侧向结合。多种与Z环相关的蛋白质(Zap)也促进FtsZ原丝之间的侧向相互作用,以在体内稳定FtsZ环。在这里,我们描述了大肠杆菌FtsZ的CTV和FtsZ环稳定蛋白ZapD在FtsZ组装中的互补作用。我们表明,FtsZ CTV的净电荷不仅影响FtsZ原丝的成束,证实了早期的观察结果,而且可能还影响体外FtsZ原丝的长度。CTV残基对细胞中的Z环组装以及与ZapD的相互作用也有重要影响。ZapD在体外与FtsZ相互作用以及在体内定位于细胞中部都需要FtsZ CTV区域。我们的数据表明了一种机制,其中CTV残基,特别是K380,促进了FtsZ中保守的羧基末端残基(位于CTV紧邻的N末端)的构象,从而能够与ZapD进行最佳接触。此外,系统发育分析表明FtsZ CTV残基的性质与β - γ - 变形菌物种中ZapD的存在之间存在相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0455/4835091/309f57a1bc44/pone.0153337.g001.jpg

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