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A Unique 45-Amino-Acid Region in the Toprim Domain of Plasmodium falciparum Gyrase B Is Essential for Its Activity

机译:恶性疟原虫促旋酶B Toprim结构域中的独特的45个氨基酸区域对其活动至关重要。

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摘要

DNA gyrase is the only topoisomerase that can introduce negative supercoils into the DNA at the cost of ATP hydrolysis. Some but not all the steps of the topoisomerization reaction are understood clearly for both eukaryotic topoII and DNA gyrase. This study is an attempt to understand whether the B subunit of DNA gyrase binds to DNA directly, which may be central to the stimulation of its ATPase activity essential for gyrase function. We have dissected the Plasmodium falciparum gyrase B (PfGyrB) subunit to identify a 45-amino-acid region in the toprim domain that is responsible for its intrinsic DNA binding activity, DNA-stimulated ATPase activity, and DNA cleavage. We find that DNA has to enter through the ATP-operated clamp of PfGyrB to gain access to the DNA binding region. Furthermore, the rate of ATP hydrolysis of PfGyrB increases significantly with increasing DNA length, suggesting a possible communication between the ATPase domain and the DNA binding region that can account for its optimal ATPase activity. These results not only highlight the mechanism of GyrB action in the deadly human parasite P. falciparum but also provide meaningful insights into the current mechanistic model of DNA transport by gyrase during the topoisomerization reaction.
机译:DNA促旋酶是唯一可以以ATP水解为代价将负超螺旋引入DNA的拓扑异构酶。对于真核生物topoII和DNA促旋酶,拓扑异构化反应的一些但不是全部步骤都被清楚地理解。这项研究试图了解DNA促旋酶的B亚基是否直接与DNA结合,这可能是刺激促旋酶功能必不可少的ATPase活性的关键。我们已经解剖了恶性疟原虫促旋酶B(PfGyrB)亚基,以鉴定toprim结构域中的45个氨基酸区域,该区域负责其固有的DNA结合活性,DNA刺激的ATPase活性和DNA裂解。我们发现,DNA必须通过ATP操作的PfGyrB钳进入,才能访问DNA结合区。此外,PfGyrB的ATP水解速率随DNA长度的增加而显着增加,表明ATPase结构域与DNA结合区之间可能存在连通,这可能说明了其最佳ATPase活性。这些结果不仅突出了GyrB在致命的人类寄生虫恶性疟原虫中的作用机理,而且还提供了对拓扑异构化反应过程中由旋转酶进行DNA转运的当前机制模型的有意义的见解。

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