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分裂体蛋白FtsN的溶液结构和结构域架构

Solution structure and domain architecture of the divisome protein FtsN.

作者信息

Yang Ji-Chun, Van Den Ent Fusinita, Neuhaus David, Brevier Julian, Löwe Jan

机构信息

MRC Laboratory of Molecular Biology, Hills Road, Cambridge CB2 2QH, UK.

出版信息

Mol Microbiol. 2004 May;52(3):651-60. doi: 10.1111/j.1365-2958.2004.03991.x.

Abstract

Prokaryotic cell division occurs through the formation of a septum, which in Escherichia coli requires coordination of the invagination of the inner membrane, biosynthesis of peptidoglycan and constriction of the outer membrane. FtsN is an essential cell division protein and forms part of the divisome, a putative complex of proteins located in the cytoplasmic membrane. Structural analyses of FtsN by nuclear magnetic resonance (NMR) reveals an RNP-like fold at the C-terminus (comprising residues 243-319), which has significant sequence homology to a peptidoglycan-binding domain. Sequential deletion mutagenesis in combination with NMR shows that the remaining of the periplasmic region of FtsN is unfolded, with the exception of three short, only partially formed helices following the trans-membrane helix. Based on these findings we propose a model in which FtsN, anchored in the inner membrane, bridges over to the peptidoglycan layer, thereby enabling the coordination of the divisome and the murein-shaping machinery in the periplasm.

摘要

原核细胞通过形成隔膜进行分裂,在大肠杆菌中,这需要内膜内陷、肽聚糖生物合成和外膜收缩的协调。FtsN是一种必需的细胞分裂蛋白,是位于细胞质膜上的一个假定蛋白质复合体——分裂体的一部分。通过核磁共振(NMR)对FtsN进行的结构分析揭示了其C端(包含243 - 319位残基)具有类似核糖核蛋白的折叠结构,该结构与肽聚糖结合结构域具有显著的序列同源性。结合NMR的连续缺失诱变表明,FtsN周质区域的其余部分是未折叠的,除了跨膜螺旋之后的三个短的、仅部分形成的螺旋。基于这些发现,我们提出了一个模型,其中锚定在内膜中的FtsN延伸至肽聚糖层,从而实现分裂体与周质中胞壁质塑造机制的协调。

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