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一种来自[具体来源未提及]的新型Z环相关蛋白ZapA样蛋白(PA5407)促进FtsZ形成双丝。

A Novel Z-Ring Associated Protein ZapA-Like Protein (PA5407) From Promotes FtsZ to Form Double Filaments.

作者信息

Wang Xiaoyu, Ma Xueqin, Li Zhe, Niu Mingyue, Zhai Meiting, Chen Yaodong

机构信息

Key Laboratory of Resources Biology and Biotechnology in Western China, Ministry of Education, College of Life Sciences, Northwest University, Xi'an, China.

出版信息

Front Microbiol. 2021 Aug 4;12:717013. doi: 10.3389/fmicb.2021.717013. eCollection 2021.

Abstract

Bacterial cell division is initiated by the assembly of the contraction ring (Z-ring), which consists of the self-assembled FtsZ protofilaments and dozens of other associate proteins. ZapA, a regulatory protein found in almost all bacteria, stabilizes FtsZ protofilaments to form bundles and enhances the Z-ring condensation. Here, we reported that another small protein from , ZapA-Like protein (ZapAL; PA5407), is a new FtsZ associated protein. ZapAL exists in many species and shares only 20% sequence identity to ZapA. ZapAL interacts with FtsZ and induces FtsZ to form long straight double filaments; in comparison, ZapA promotes long bundles with multiple FtsZ filaments. ZapAL has only a mild effect on GTPase activity of FtsZ, which is reduced by around 26% when 10 μM ZapAL is added in the solution. However, to study their assembly dynamics using light-scattering assay, we found that FtsZ-ZapAL double filament is stable and no depolymerization process is observed, which is different from ZapA. Further research found that ZapA and ZapL are likely to form heterodimers. The bundles formed by the mixture of FtsZ-ZapA-ZapAL will depolymerize after GTP is hydrolyzed. Consistent with ZapAL interaction with FtsZ , the expression of ZapAL-GFP was observed as a narrow band or spots in the middle of the cells, suggesting that it is a component of bacterial division machinery. Similar to ZapA, ZapAL is also not essential for bacterial cell division. Little changes were observed when gene was deleted, or overexpressed under normal conditions; however, overexpression of ZapAL caused -deficient cells to grow approximately two times longer, showing a mild bacterial division defect. Although we still do not know the exact physiological roles of ZapAL, our results suggest that ZapAL is a novel Z-ring associate protein, which may work together with ZapA to stabilize the FtsZ protofilament and Z-ring structure.

摘要

细菌细胞分裂由收缩环(Z环)的组装启动,收缩环由自组装的FtsZ原丝和数十种其他相关蛋白组成。ZapA是一种在几乎所有细菌中都能找到的调节蛋白,它能稳定FtsZ原丝以形成束状结构并增强Z环的凝聚。在此,我们报道了另一种来自[具体物种未提及]的小蛋白,类ZapA蛋白(ZapAL;PA5407),是一种新的FtsZ相关蛋白。ZapAL存在于许多物种中,与ZapA的序列同一性仅为20%。ZapAL与FtsZ相互作用并诱导FtsZ形成长而直的双丝;相比之下,ZapA促进形成具有多条FtsZ丝的长束。ZapAL对FtsZ的GTPase活性只有轻微影响,当在溶液中加入10μM ZapAL时,其活性降低约26%。然而,为了使用光散射测定法研究它们的组装动力学,我们发现FtsZ-ZapAL双丝是稳定的,未观察到解聚过程,这与ZapA不同。进一步研究发现ZapA和ZapL可能形成异二聚体。由FtsZ-ZapA-ZapAL混合物形成的束在GTP水解后会解聚。与ZapAL与FtsZ的相互作用一致,观察到ZapAL-GFP的表达在细胞中部呈窄带或斑点状,表明它是细菌分裂机制的一个组成部分。与ZapA类似,ZapAL对细菌细胞分裂也不是必需的。当[具体基因未提及]基因被删除或在正常条件下过表达时,几乎没有观察到变化;然而,ZapAL的过表达导致[具体缺陷未提及]细胞生长约两倍长,显示出轻微的细菌分裂缺陷。虽然我们仍然不知道ZapAL的确切生理作用,但我们的结果表明ZapAL是一种新型的Z环相关蛋白,它可能与ZapA协同作用以稳定FtsZ原丝和Z环结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/006e/8371321/30dbfa867849/fmicb-12-717013-g001.jpg

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