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Structural role of two histidines in the (6-4) photolyase reaction

机译:两个组氨酸在(6-4)光裂解酶反应中的结构作用

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摘要

Photolyases (PHRs) are DNA repair enzymes that revert UV-induced photoproducts, either cyclobutane pyrimidine dimers (CPD) or (6-4) photoproducts (PPs), into normal bases to maintain genetic integrity. (6-4) PHR must catalyze not only covalent bond cleavage, but also hydroxyl or amino group transfer, yielding a more complex mechanism than that postulated for CPD PHR. Previous mutation analysis revealed the importance of two histidines in the active center, H354 and H358 for Xenopus (6-4) PHR, whose mutations significantly lowered the enzymatic activity. Based upon highly sensitive FTIR analysis of the repair function, here we report that both H354A and H358A mutants of Xenopus (6-4) PHR still maintain their repair activity, although the efficiency is much lower than that of the wild type. Similar difference FTIR spectra between the wild type and mutant proteins suggest a common mechanism of repair in which (6-4) PP binds to the active center of each mutant, and is released after repair, as occurs in the wild type. Similar FTIR spectra also suggest that a decrease in volume by the H-to-A mutation is possibly compensated by the addition of water molecule( s). Such a modified environment is sufficient for the repair function that is probably controlled by proton-coupled electron transfer between the enzyme and substrate. On the other hand, two histidines must work in a concerted manner in the active center of the wild-type enzyme, which significantly raises the repair efficiency.
机译:光解酶(PHR)是DNA修复酶,可将紫外线诱导的光产物(环丁烷嘧啶二聚体(CPD)或(6-4)光产物(PPs))还原为正常碱基,以维持遗传完整性。 (6-4)PHR不仅必须催化共价键断裂,而且还必须催化羟基或氨基转移,从而产生比CPD PHR假定的机制更复杂的机制。先前的突变分析显示,对于非洲爪蟾(6-4)PHR,活性中心中的两个组氨酸H354和H358的重要性,其突变显着降低了酶活性。基于修复功能的高灵敏度FTIR分析,在此我们报道非洲爪蟾(6-4)PHR的H354A和H358A突变体仍保持其修复活性,尽管效率远低于野生型。野生型蛋白和突变蛋白之间的相似FTIR光谱差异表明修复的常见机制,其中(6-4)PP结合到每个突变体的活性中心,并在修复后释放,如野生型一样。相似的FTIR光谱也表明,由H-to-A突变引起的体积减少可能通过添加水分子来补偿。这种修饰的环境足以实现修复功能,修复功能可能由酶和底物之间的质子偶联电子转移控制。另一方面,两个组氨酸必须在野生型酶的活性中心协同作用,这大大提高了修复效率。

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