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Structural and functional studies of MinD ATPase: implications for the molecular recognition of the bacterial cell division apparatus

机译:MinD ATPase的结构和功能研究:对细菌细胞分裂装置的分子识别的意义

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摘要

Proper placement of the bacterial cell division site requires the site-specific inactivation of other potential division sites. In Escherichia coli, selection of the correct mid-cell site is mediated by the MinC, MinD and MinE proteins. To clarify the functional role of the bacterial cell division inhibitor MinD, which is a membrane-associated ATPase that works as an activator of MinC, we determined the crystal structure of a Pyrococcus furiosus MinD homologue complexed with a substrate analogue, AMPPCP, and with the product ADP at resolutions of 2.7 and 2.0 Å, respectively. The structure reveals general similarities to the nitrogenase iron protein, the H-Ras p21 and the RecA-like ATPase domain. Alanine scanning mutational analyses of E.coli MinD were also performed in vivo. The results suggest that the residues around the ATP-binding site are required for the direct interaction with MinC, and that ATP binding and hydrolysis play a role as a molecular switch to control the mechanisms of MinCDE-dependent bacterial cell division.
机译:细菌细胞分裂位点的正确放置需要其他潜在分裂位点的位点特异性失活。在大肠杆菌中,正确的中间细胞位点的选择是由MinC,MinD和MinE蛋白介导的。为了阐明细菌细胞分裂抑制剂MinD(一种与膜相关的ATP酶,可作为MinC的激活剂)的功能性作用,我们确定了激烈热球菌MinD同源物的晶体结构,该同源物与底物类似物AMPPCP以及与产品ADP的分辨率分别为2.7和2.0Å。该结构揭示了与固氮酶铁蛋白,H-Ras p21和RecA-like ATPase结构域的普遍相似性。还在体内对大肠杆菌MinD进行了丙氨酸扫描突变分析。结果表明,ATP结合位点周围的残基是与MinC直接相互作用所必需的,并且ATP结合和水解起着分子开关的作用,以控制MinCDE依赖性细菌细胞分裂的机制。

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