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Cyclobutylthymidine Dimer Repair by DNA Photolyase in Real Time

机译:通过DNA光解酶实时修复环丁基吡啶二聚体修复

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DNA photolyase (PL) is a monomeric flavoprotein that binds cyclobutylpyrimidine dimers (CPDs) and repairs them via photoinduced electron transfer from a reduced flavin adenine dinucleotide cofactor (FADH") to the CPD. In spite of significant effort, the repair mechanism remains poorly understood. We have used femtosecond transient absorption spectroscopy to explore the electron transfer and repair kinetics o f A. nidulans DNA photolyase with oligothymidine substrates in real time, Dimeric substrates show a concentration-dependent mixture of kinetics representing bound and unbound substrate. A 1 onger pentameric substrate shows faster electron transfer than previously observed. Repair of the carbon-carbon double bonds (C=C) in the CPD appears to be complete by 1,500 ps. Target analysis of the kinetics is unable to distinguish between sequential and concerted models for the repair reaction, although the data are suggestive of the former.
机译:DNA光解酶(PL)是一种单体黄色蛋白,其结合环丁基吡啶氨酸二聚体(CPD),并通过从减少的黄金腺嘌呤二核苷酸辅因子(FADH)的光致电子转移来修复CPD。尽管有很大的努力,修复机制仍然仍然很糟糕。我们使用了Femtosecond暂态吸收光谱,探讨了A. nidulans DNA光解酶的电子转移和修复动力学实时,二聚体底物显示出代表结合和未结合基材的动力学的浓度依赖性混合物。1个onger inger聚酰胺基材显示比以前观察到的更快的电子传感。CPD中的碳 - 碳双键(C = C)的修复似乎是完整的1,500 ps。动力学的目标分析无法区分修复反应的顺序和齐齐异的模型,虽然数据暗示了前者。

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