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Characterisation of the DNA gyrase from the thermophilic eubacterium Thermus thermophilus

机译:嗜热真细菌嗜热栖热菌DNA促旋酶的表征

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DNA gyrase is a type IIA topoisomerase found in bacteria but not in humans. The enzyme is required for bacterial DNA replication and transcription, and is an important antibacterial target that is sensitive to the widely-used fluoroquinolone drugs. Due to the emergence of fluoroquinolone resistance, the discovery of new classes of drugs that target DNA gyrase is urgent. The DNA gyrase holoenzyme is a heterodimer of subunit pairs (A(2)B(2)). The 90 kDa A subunits bind, cleave, and rejoin double stranded DNA. The enzyme introduces negative supercoils into closed circular bacterial DNA using ATP hydrolysis catalysed by the 70 kDa B subunits. Subdomains of DNA gyrase subunits have been crystallised for structural analysis and the resulting models used to improve drugs that target the DNA binding region and active site. While crystal structures are available for topoisomerase IV complexes with cleaved DNA, there is none for the complete DNA gyrase complex with substrate DNA bound. Thermophiles offer significant advantages in obtaining stable enzymes for structural and functional studies. In order to develop a capability for drug screening and structure-directed drug discovery we have reconstituted a functional and drug-sensitive DNA gyrase complex using heterologously expressed subunits from the thermophile Thermus the rmophilus. (C) 2014 Elsevier Inc. All rights reserved.
机译:DNA促旋酶是在细菌中发现的IIA型拓扑异构酶,但在人类中却没有。该酶是细菌DNA复制和转录所必需的,并且是对广泛使用的氟喹诺酮药物敏感的重要抗菌靶标。由于氟喹诺酮耐药性的出现,迫切需要发现靶向DNA促旋酶的新型药物。 DNA促旋酶全酶是亚基对(A(2)B(2))的异二聚体。 90 kDa A亚基结合,切割和重新结合双链DNA。该酶利用70 kDa B亚基催化的ATP水解,将负超螺旋引入封闭的环状细菌DNA中。 DNA促旋酶亚基的亚结构域已被结晶,用于结构分析,所得的模型用于改进靶向DNA结合区和活性位点的药物。虽然晶体结构可用于具有切割的DNA的拓扑异构酶IV复合物,但没有完整的DNA促旋酶复合物与底物DNA结合。嗜热菌在获得用于结构和功能研究的稳定酶方面具有显着优势。为了发展药物筛选和结构导向药物发现的能力,我们使用嗜热嗜热菌嗜热菌的异源表达亚单位重建了功能性和药物敏感性DNA促旋酶复合物。 (C)2014 Elsevier Inc.保留所有权利。

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