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Crystal structure of the DNA nucleotide excision repair enzyme UvrB from Thermus thermophilus

机译:嗜热栖热菌DNA核苷酸切除修复酶UvrB的晶体结构

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摘要

Nucleotide excision repair (NER) is the most important DNA-repair mechanism in living organisms. In prokaryotes, three enzymes forming the UvrABC system initiate NER of a variety of structurally different DNA lesions. UvrB, the central component of this system, is responsible for the ultimate DNA damage recognition and participates in the incision of the damaged DNA strand. The crystal structure of Thermus thermophilus UvrB reveals a core that is structurally similar to core regions found in helicases, where they constitute molecular motors. Additional domains implicated in binding to DNA and various components of the NER system are attached to this central core. The architecture and distribution of DNA binding sites suggest a possible model for the DNA damage recognition process.
机译:核苷酸切除修复(NER)是生物中最重要的DNA修复机制。在原核生物中,形成UvrABC系统的三种酶引发各种结构不同的DNA损伤的NER。 UvrB是该系统的核心组件,负责最终的DNA损伤识别,并参与受损DNA链的切割。嗜热栖热菌UvrB的晶体结构揭示了一个核心,其结构与解旋酶中的核心区域相似,在核心区域中它们构成了分子马达。牵涉到与DNA和NER系统的各种组成部分结合的其他域连接到此核心。 DNA结合位点的结构和分布为DNA损伤识别过程提供了可能的模型。

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