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首页> 外文期刊>Biochemistry >The Glu-84 of the ParC Subunit Plays Critical Roles in Both Topoisomerase IV-Quinolone and Topoisomerase IV-DNA Interactions.
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The Glu-84 of the ParC Subunit Plays Critical Roles in Both Topoisomerase IV-Quinolone and Topoisomerase IV-DNA Interactions.

机译:ParC亚基的Glu-84在拓扑异构酶IV-喹诺酮和拓扑异构酶IV-DNA相互作用中都起着关键作用。

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摘要

DNA gyrase and topoisomerase IV (Topo IV) are cellular targets of quinolone antibacterial drugs. The Ser-80 and the Glu-84 of the ParC subunit have been identified as mutational hotspots for quinolone resistance. Mutant Topo IV proteins containing a quinolone resistance-conferring mutation have been constructed, and the effects of these mutations on Topo IV are assessed. Both S80L and E84K mutations abolish the ability of quinolones to trap covalent Topo IV-DNA complexes, demonstrating that both the Ser-80 and the Glu-84 of ParC are essential for Topo IV-quinolone interaction. In addition, the E84K mutation greatly reduces the catalytic activity of Topo IV. Covalent Topo IV-DNA complexes formed with Topo IV containing the E84K mutation are more stable than those formed with the wild-type protein. Interestingly, the E84P mutation confers quinolone resistance to Topo IV without affecting its catalytic activity. The E84P mutation inhibits the formation of covalent Topo IV-DNA complexes when Mg(2+), but not Ca(2+), is used as a cofactor. These results show that the Glu-84 plays an important role in Topo IV-DNA interaction. Thus, the Glu-84 of ParC is critical for the interactions of Topo IV with both the quinolone drug and the DNA in topoisomerase-quinolone-DNA ternary complexes.
机译:DNA促旋酶和拓扑异构酶IV(Topo IV)是喹诺酮类抗菌药物的细胞靶标。 ParC亚基的Ser-80和Glu-84已被确定为喹诺酮耐药性的突变热点。已经构建了包含赋予喹诺酮抗性的突变的突变Topo IV蛋白,并评估了这些突变对Topo IV的影响。 S80L和E84K突变都消除了喹诺酮类捕获共价Topo IV-DNA复合物的能力,这表明ParC的Ser-80和Glu-84都是Topo IV-喹诺酮相互作用所必需的。此外,E84K突变大大降低了Topo IV的催化活性。用含有E84K突变的Topo IV形成的共价Topo IV-DNA复合物比用野生型蛋白形成的那些稳定。有趣的是,E84P突变赋予喹诺酮对Topo IV耐药,而不会影响其催化活性。当Mg(2+)而不是Ca(2+)用作辅因子时,E84P突变抑制共价Topo IV-DNA复合物的形成。这些结果表明,Glu-84在Topo IV-DNA相互作用中起重要作用。因此,ParC的Glu-84对于Topo IV与拓扑异构酶-喹诺酮-DNA三元复合物中的喹诺酮药物和DNA的相互作用至关重要。

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