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首页> 外文期刊>Molecular Microbiology >Structure-function analysis of the LytM domain of EnvC, an activator of cell wall remodelling at the Escherichia coli division site
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Structure-function analysis of the LytM domain of EnvC, an activator of cell wall remodelling at the Escherichia coli division site

机译:EnvC LytM结构域的结构功能分析,EnvC是大肠杆菌分裂位点的细胞壁重塑激活剂

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摘要

Proteins with LytM (Peptidase_M23) domains are broadly distributed in bacteria and have been implicated in a variety of important processes, including cell division and cell-shape determination. Most LytM-like proteins that have been structurally and/or biochemically characterized are metallo-endopeptidases that cleave cross-links in the peptidoglycan (PG) cell wall matrix. Notable exceptions are the Escherichia coli cell division proteins EnvC and NlpD. These LytM factors are not hydrolases themselves, but instead serve as activators that stimulate PG cleavage by target enzymes called amidases to promote cell separation. Here we report the structure of the LytM domain from EnvC, the first structure of a LytM factor implicated in the regulation of PG hydrolysis. As expected, the fold is highly similar to that of other LytM proteins. However, consistent with its role as a regulator, the active-site region is degenerate and lacks a catalytic metal ion. Importantly, genetic analysis indicates that residues in and around this degenerate active site are critical for amidase activation in vivo and in vitro. Thus, in the regulatory LytM factors, the apparent substrate binding pocket conserved in active metallo-endopeptidases has been adapted to control PG hydrolysis by another set of enzymes.
机译:具有LytM(Peptidase_M23)结构域的蛋白质广泛分布在细菌中,并与多种重要过程有关,包括细胞分裂和细胞形状确定。在结构和/或生物化学上已表征的大多数LytM样蛋白都是金属内肽酶,可裂解肽聚糖(PG)细胞壁基质中的交联键。值得注意的例外是大肠杆菌细胞分裂蛋白EnvC和NlpD。这些LytM因子本身不是水解酶,而是充当激活剂,通过称为酰胺酶的靶酶刺激PG裂解,从而促进细胞分离。在这里,我们从EnvC报告了LytM结构域的结构,这是涉及PG水解调控的LytM因子的第一个结构。如所预期的,该折叠与其他LytM蛋白的折叠高度相似。然而,与其作为调节剂的作用一致,活性部位区域是简并的并且缺乏催化金属离子。重要的是,遗传分析表明,该简并活性位点及其周围的残基对于体内和体外酰胺酶的活化至关重要。因此,在调节性LytM因子中,在活性金属-内肽酶中保守的表观底物结合口袋已经适应于通过另一组酶控制PG水解。

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