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定点荧光标记揭示了大肠杆菌细胞分裂蛋白FtsK中经修订的N端膜拓扑结构和功能性周质残基。

Site-directed fluorescence labeling reveals a revised N-terminal membrane topology and functional periplasmic residues in the Escherichia coli cell division protein FtsK.

作者信息

Berezuk Alison M, Goodyear Mara, Khursigara Cezar M

机构信息

From the Department of Molecular and Cellular Biology, University of Guelph, Guelph, Ontario N1G 2W1, Canada.

From the Department of Molecular and Cellular Biology, University of Guelph, Guelph, Ontario N1G 2W1, Canada

出版信息

J Biol Chem. 2014 Aug 22;289(34):23287-301. doi: 10.1074/jbc.M114.569624. Epub 2014 Jul 7.

DOI:10.1074/jbc.M114.569624
PMID:25002583
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4156081/
Abstract

In Escherichia coli, FtsK is a large integral membrane protein that coordinates chromosome segregation and cell division. The N-terminal domain of FtsK (FtsKN) is essential for division, and the C terminus (FtsKC) is a well characterized DNA translocase. Although the function of FtsKN is unknown, it is suggested that FtsK acts as a checkpoint to ensure DNA is properly segregated before septation. This may occur through modulation of protein interactions between FtsKN and other division proteins in both the periplasm and cytoplasm; thus, a clear understanding of how FtsKN is positioned in the membrane is required to characterize these interactions. The membrane topology of FtsKN was initially determined using site-directed reporter fusions; however, questions regarding this topology persist. Here, we report a revised membrane topology generated by site-directed fluorescence labeling. The revised topology confirms the presence of four transmembrane segments and reveals a newly identified periplasmic loop between the third and fourth transmembrane domains. Within this loop, four residues were identified that, when mutated, resulted in the appearance of cellular voids. High resolution transmission electron microscopy of these voids showed asymmetric division of the cytoplasm in the absence of outer membrane invagination or visible cell wall ingrowth. This uncoupling reveals a novel role for FtsK in linking cell envelope septation events and yields further evidence for FtsK as a critical checkpoint of cell division. The revised topology of FtsKN also provides an important platform for future studies on essential interactions required for this process.

摘要

在大肠杆菌中,FtsK是一种大型整合膜蛋白,可协调染色体分离和细胞分裂。FtsK的N端结构域(FtsKN)对细胞分裂至关重要,而C端(FtsKC)是一种特性明确的DNA转位酶。尽管FtsKN的功能尚不清楚,但有人认为FtsK作为一个检查点,以确保在隔膜形成之前DNA能正确分离。这可能是通过调节周质和细胞质中FtsKN与其他分裂蛋白之间的蛋白质相互作用来实现的;因此,要表征这些相互作用,就需要清楚了解FtsKN在膜中的定位方式。FtsKN的膜拓扑结构最初是使用定点报告基因融合来确定的;然而,关于这种拓扑结构的问题仍然存在。在这里,我们报告了通过定点荧光标记产生的修正后的膜拓扑结构。修正后的拓扑结构证实了四个跨膜片段的存在,并揭示了在第三个和第四个跨膜结构域之间新发现的一个周质环。在这个环内,鉴定出了四个残基,当它们发生突变时,会导致细胞出现空洞。对这些空洞的高分辨率透射电子显微镜观察显示,在没有外膜内陷或可见细胞壁向内生长的情况下,细胞质出现不对称分裂。这种解偶联揭示了FtsK在连接细胞膜隔膜形成事件中的新作用,并为FtsK作为细胞分裂的关键检查点提供了进一步的证据。FtsKN修正后的拓扑结构也为该过程所需的基本相互作用的未来研究提供了一个重要平台。

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本文引用的文献

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mBio. 2013 Dec 3;4(6):e00800-13. doi: 10.1128/mBio.00800-13.
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In Situ probing of newly synthesized peptidoglycan in live bacteria with fluorescent D-amino acids.利用荧光 D-氨基酸原位探测活细菌中新合成的肽聚糖。
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3D-SIM super resolution microscopy reveals a bead-like arrangement for FtsZ and the division machinery: implications for triggering cytokinesis.3D-SIM 超分辨率显微镜揭示了 FtsZ 和分裂机制的珠状排列:对触发细胞分裂的影响。
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ZipA is required for FtsZ-dependent preseptal peptidoglycan synthesis prior to invagination during cell division.Zipa 在细胞分裂过程中,在间隔前肽聚糖合成之前,是 FtsZ 依赖性的,对于间隔前肽聚糖合成是必需的。
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From the regulation of peptidoglycan synthesis to bacterial growth and morphology.从肽聚糖合成的调控到细菌的生长和形态。
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Functional and structural characterization of polysaccharide co-polymerase proteins required for polymer export in ATP-binding cassette transporter-dependent capsule biosynthesis pathways.功能和结构表征多聚糖共聚合酶蛋白在依赖于 ATP 结合盒转运蛋白的囊胞生物合成途径中聚合物输出所必需的。
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FtsK--a bacterial cell division checkpoint?FtsK——细菌细胞分裂检查点?
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FtsZ in bacterial cytokinesis: cytoskeleton and force generator all in one.细菌胞质分裂中的 FtsZ:细胞骨架和力发生器合二为一。
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Multiple regions along the Escherichia coli FtsK protein are implicated in cell division.大肠杆菌 FtsK 蛋白的多个区域与细胞分裂有关。
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