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The presence of two UvrB subunits in the UvrAB complex ensures damage detection in both DNA strands

机译:UvrAB复合物中两个UvrB亚基的存在可确保检测两条DNA链中的损伤

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摘要

It is generally accepted that the damage recognition complex of nucleotide excision repair in Escherichia coli consists of two UvrA and one UvrB molecule, and that in the preincision complex UvrB binds to the damage as a monomer. Using scanning force microscopy, we show here that the damage recognition complex consists of two UvrA and two UvrB subunits, with the DNA wrapped around one of the UvrB monomers. Upon binding the damage and release of the UvrA subunits, UvrB remains a dimer in the preincision complex. After association with the UvrC protein, one of the UvrB monomers is released. We propose a model in which the presence of two UvrB subunits ensures damage recognition in both DNA strands. Upon binding of the UvrA2B2 complex to a putative damaged site, the DNA wraps around one of the UvrB monomers, which will subsequently probe one of the DNA strands for the presence of a lesion. When no damage is found, the DNA will wrap around the second UvrB subunit, which will check the other strand for aberrations.
机译:人们普遍认为,大肠杆菌中核苷酸切除修复的损伤识别复合物由两个UvrA和一个UvrB分子组成,并且在切割前复合物中,UvrB作为单体与损伤结合。使用扫描力显微镜,我们在这里显示损伤识别复合物由两个UvrA和两个UvrB亚基组成,DNA包裹在一个UvrB单体周围。结合UvrA亚基的损伤和释放后,UvrB在切开前复合物中仍为二聚体。与UvrC蛋白缔合后,UvrB单体之一被释放。我们提出了一个模型,其中两个UvrB亚基的存在确保了两条DNA链中的损伤识别。当UvrA2B2复合物与假定的受损位点结合后,DNA会包裹UvrB单体之一,后者随后将探测DNA链之一中是否存在病变。如果没有发现损坏,DNA将包裹第二个UvrB亚基,后者将检查另一条链是否存在畸变。

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