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首页> 外文期刊>PLoS Biology >Structural Insights Into DNA Repair by RNase T—An Exonuclease Processing 3′ End of Structured DNA in Repair Pathways
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Structural Insights Into DNA Repair by RNase T—An Exonuclease Processing 3′ End of Structured DNA in Repair Pathways

机译:通过RNase T进行DNA修复的结构见解-核酸外切酶在修复途径中处理结构化DNA的3'末端

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DNA repair mechanisms are essential for preservation of genome integrity. However, it is not clear how DNA are selected and processed at broken ends by exonucleases during repair pathways. Here we show that the DnaQ-like exonuclease RNase T is critical for Escherichia coli resistance to various DNA-damaging agents and UV radiation. RNase T specifically trims the 3′ end of structured DNA, including bulge, bubble, and Y-structured DNA, and it can work with Endonuclease V to restore the deaminated base in an inosine-containing heteroduplex DNA. Crystal structure analyses further reveal how RNase T recognizes the bulge DNA by inserting a phenylalanine into the bulge, and as a result the 3′ end of blunt-end bulge DNA can be digested by RNase T. In contrast, the homodimeric RNase T interacts with the Y-structured DNA by a different binding mode via a single protomer so that the 3′ overhang of the Y-structured DNA can be trimmed closely to the duplex region. Our data suggest that RNase T likely processes bulge and bubble DNA in the Endonuclease V–dependent DNA repair, whereas it processes Y-structured DNA in UV-induced and various other DNA repair pathways. This study thus provides mechanistic insights for RNase T and thousands of DnaQ-like exonucleases in DNA 3′-end processing.
机译:DNA修复机制对于保持基因组完整性至关重要。但是,尚不清楚在修复途径中如何通过核酸外切酶在断裂末端选择和加工DNA。在这里,我们显示DnaQ样核酸外切酶RNase T对于大肠杆菌对各种DNA破坏剂和紫外线辐射的抗性至关重要。 RNase T特异地修剪了结构化DNA的3'端,包括凸出,气泡和Y型结构化DNA,它可以与核酸内切酶V协同作用以还原含肌苷的异源双链体DNA中的脱氨基碱基。晶体结构分析进一步揭示了RNase T如何通过将苯丙氨酸插入到凸起中来识别凸起的DNA,因此,平末端的凸起DNA的3'端可以被RNase T消化。相反,同型二聚体RNase T与Y结构的DNA可以通过单个前体以不同的结合模式结合,从而可以将Y结构的DNA的3'突出端修整到接近双链体区域。我们的数据表明,RNase T可能在核酸内切酶V依赖的DNA修复过程中处理凸起和气泡DNA,而在紫外线诱导的和其他各种DNA修复途径中处理Y结构的DNA。因此,这项研究为DNA 3'末端加工中的RNase T和数千种DnaQ样核酸外切酶提供了机械方面的见识。

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