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FtsK对于无FtsZ的独特分裂体复合物的组装至关重要。

FtsK is Critical for the Assembly of the Unique Divisome Complex of the FtsZ-less .

作者信息

Harpring McKenna, Lee Junghoon, Zhong Guangming, Ouellette Scot P, Cox John V

机构信息

Department of Microbiology, Immunology, and Biochemistry. University of Tennessee Health Science Center. Memphis, TN, USA.

Department of Pathology, Microbiology, and Immunology, University of Nebraska Medical Center, Omaha, NE, USA.

出版信息

bioRxiv. 2025 Jan 9:2024.10.24.620021. doi: 10.1101/2024.10.24.620021.

Abstract

serovar L2 , an obligate intracellular bacterium that does not encode FtsZ, divides by a polarized budding process. In the absence of FtsZ, we show that FtsK, a chromosomal translocase, is critical for divisome assembly in . Chlamydial FtsK forms discrete foci at the septum and at the base of the progenitor mother cell, and our data indicate that FtsK foci at the base of the mother cell mark the location of nascent divisome complexes that form at the site where a daughter cell will emerge in the next round of division. The divisome in has a hybrid composition, containing elements of the divisome and elongasome from other bacteria, and FtsK is recruited to nascent divisomes prior to the other chlamydial divisome proteins assayed, including the PBP2 and PBP3 transpeptidases, and MreB and MreC. Knocking down FtsK prevents divisome assembly in and inhibits cell division and septal peptidoglycan synthesis. We further show that MreB does not function like FtsZ and serve as a scaffold for the assembly of the divisome. Rather, MreB is one of the last proteins recruited to the chlamydial divisome, and it is necessary for the formation of septal peptidoglycan rings. Our studies illustrate the critical role of chlamydial FtsK in coordinating divisome assembly and peptidoglycan synthesis in this obligate intracellular bacterial pathogen.

摘要

血清型L2是一种不编码FtsZ的专性胞内细菌,通过极化出芽过程进行分裂。在缺乏FtsZ的情况下,我们发现染色体转位酶FtsK对衣原体的分裂体组装至关重要。衣原体FtsK在隔膜和祖代母细胞底部形成离散的焦点,我们的数据表明母细胞底部的FtsK焦点标记了新生分裂体复合物的位置,这些复合物在下一轮分裂中会在子细胞出现的部位形成。衣原体的分裂体具有混合组成,包含来自其他细菌的分裂体和伸长体的成分,并且在检测的其他衣原体分裂体蛋白(包括PBP2和PBP3转肽酶以及MreB和MreC)之前,FtsK就被招募到新生分裂体中。敲低FtsK会阻止衣原体中的分裂体组装,并抑制细胞分裂和隔膜肽聚糖合成。我们进一步表明,MreB的功能不像FtsZ那样作为衣原体分裂体组装的支架。相反,MreB是最后被招募到衣原体分裂体的蛋白质之一,并且它对于隔膜肽聚糖环的形成是必需的。我们的研究说明了衣原体FtsK在这种专性胞内细菌病原体中协调分裂体组装和肽聚糖合成的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5d3/11727471/cb959ed21760/nihpp-2024.10.24.620021v2-f0001.jpg

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