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Twisting of the DNA-binding surface by a β-strand-bearing proline modulates DNA gyrase activity

机译:带有β链的脯氨酸扭曲DNA结合表面可调节DNA旋转酶活性

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摘要

DNA gyrase is the only topoisomerase capable of introducing (−) supercoils into relaxed DNA. The C-terminal domain of the gyrase A subunit (GyrA-CTD) and the presence of a gyrase-specific ‘GyrA-box’ motif within this domain are essential for this unique (−) supercoiling activity by allowing gyrase to wrap DNA around itself. Here we report the crystal structure of Xanthomonas campestris GyrA-CTD and provide the first view of a canonical GyrA-box motif. This structure resembles the GyrA-box-disordered Escherichia coli GyrA-CTD, both adopting a non-planar β-pinwheel fold composed of six seemingly spirally arranged β-sheet blades. Interestingly, structural analysis revealed that the non-planar architecture mainly stems from the tilted packing seen between blades 1 and 2, with the packing geometry likely being defined by a conserved and unusual β-strand-bearing proline. Consequently, the GyrA-box-containing blade 1 is placed at an angled spatial position relative to the other DNA-binding blades, and an abrupt bend is introduced into the otherwise flat DNA-binding surface. Mutagenesis studies support that the proline-induced structural twist contributes directly to gyrase’s (−) supercoiling activity. To our knowledge, this is the first demonstration that a β-strand-bearing proline may impact protein function. Potential relevance of β-strand-bearing proline to disease phenylketonuria is also noted.
机译:DNA促旋酶是唯一能够将(-)超螺旋引入松弛DNA的拓扑异构酶。旋回酶A亚基(GyrA-CTD)的C末端结构域和该结构域中回旋酶特有的'GyrA-box'基序的存在对于这种独特的(-)超螺旋活性至关重要,它允许回旋酶将DNA自身包裹起来。在这里,我们报告Xanthomonas campestris GyrA-CTD的晶体结构,并提供规范的GyrA-box主题的第一个视图。这种结构类似于GyrA-box紊乱的大肠杆菌GyrA-CTD,两者均采用由六个看似螺旋排列的β-sheet叶片组成的非平面β-风车折叠。有趣的是,结构分析表明,非平面结构主要源于叶片1和2之间的倾斜堆积,堆积的几何形状很可能是由保守且不寻常的β链脯氨酸定义的。因此,将含有GyrA-box的刀片1相对于其他DNA结合刀片置于一定角度的空间位置,并将突然的弯曲引入否则平坦的DNA结合表面中。诱变研究支持脯氨酸诱导的结构扭曲直接促成回旋酶(-)的超螺旋活性。据我们所知,这是第一个证明β链脯氨酸可能影响蛋白质功能的证据。还指出了β链脯氨酸与疾病苯丙酮尿症的潜在相关性。

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