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A domain insertion in Escherichia coli GyrB adopts a novel fold that plays a critical role in gyrase function

机译:大肠杆菌GyrB中的结构域插入采用了一种新颖的折叠方式,该折叠方式在回旋酶功能中起着至关重要的作用

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摘要

DNA topoisomerases manage chromosome supercoiling and organization in all forms of life. Gyrase, a prokaryotic heterotetrameric type IIA topo, introduces negative supercoils into DNA by an ATP-dependent strand passage mechanism. All gyrase orthologs rely on a homologous set of catalytic domains for function; however, these enzymes also can possess species-specific auxiliary regions. The gyrases of many gram-negative bacteria harbor a 170-amino acid insertion of unknown architecture and function in the metal- and DNA-binding TOPRIM domain of the GyrB subunit. We have determined the structure of the 212 kDa Escherichia coli gyrase DNA binding and cleavage core containing this insert to 3.1 A resolution. We find that the insert adopts a novel, extended fold that braces the GyrB TOPRIM domain against the coiled-coil arms of its partner GyrA subunit. Structure-guided deletion of the insert greatly reduces the DNA binding, supercoiling and DNA-stimulated ATPase activities of gyrase. Mutation of a single amino acid at the contact point between the insert and GyrA more modestly impairs supercoiling and ATP turnover, and does not affect DNA binding. Our data indicate that the insert has two functions, acting as a steric buttress to pre-configure the primary DNA-binding site, and serving as a relay that may help coordinate communication between different functional domains.
机译:DNA拓扑异构酶可管理所有生命形式的染色体超螺旋和组织。促旋酶,原核异源四聚体IIA型拓扑,通过ATP依赖链通过机制将负超螺旋引入DNA。所有的促旋酶直向同源物都依赖于同源的催化结构域集合来发挥功能。然而,这些酶也可以具有物种特异性的辅助区域。许多革兰氏阴性细菌的回转体在GyrB亚基的金属和DNA结合TOPRIM域中具有未知结构和功能的170个氨基酸插入。我们已经确定了212 kDa的大肠杆菌促旋酶DNA结合和裂解核心的结构,该核心含有3.1 A的分辨率。我们发现插入物采用了新颖的,延伸的折叠,该折叠将GyrB TOPRIM结构域与其伴侣GyrA亚基的卷曲螺旋臂相对应。插入物的结构引导缺失极大地降低了回旋酶的DNA结合,超螺旋和DNA刺激的ATPase活性。在插入物和GyrA之间的接触点处的单个氨基酸突变更适度地损害了超螺旋和ATP周转,并且不影响DNA结合。我们的数据表明该插入片段具有两个功能,即作为空间支柱来预配置主要的DNA结合位点,以及用作中继器,可以帮助协调不同功能域之间的通信。

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