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N-terminal domain of human uracil DNA glycosylase (hUNG2) promotes targeting to uracil sites adjacent to ssDNA–dsDNA junctions

机译:人尿嘧啶DNA糖基化酶(hUNG2)的N端结构域促进靶向ssDNA-dsDNA交界处的尿嘧啶位点

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摘要

The N-terminal domain (NTD) of nuclear human uracil DNA glycosylase (hUNG2) assists in targeting hUNG2 to replication forks through specific interactions with replication protein A (RPA). Here, we explored hUNG2 activity in the presence and absence of RPA using substrates with ssDNA–dsDNA junctions that mimic structural features of the replication fork and transcriptional R-loops. We find that when RPA is tightly bound to the ssDNA overhang of junction DNA substrates, base excision by hUNG2 is strongly biased toward uracils located 21 bp or less from the ssDNA–dsDNA junction. In the absence of RPA, hUNG2 still showed an 8-fold excision bias for uracil located <10 bp from the junction, but only when the overhang had a 5′ end. Biased targeting required the NTD and was not observed with the hUNG2 catalytic domain alone. Consistent with this requirement, the isolated NTD was found to bind weakly to ssDNA. These findings indicate that the NTD of hUNG2 targets the enzyme to ssDNA–dsDNA junctions using RPA-dependent and RPA-independent mechanisms. This structure-based specificity may promote efficient removal of uracils that arise from dUTP incorporation during DNA replication, or additionally, uracils that arise from DNA cytidine deamination at transcriptional R-loops during immunoglobulin class-switch recombination.
机译:核人尿嘧啶DNA糖基化酶(hUNG2)的N末端结构域(NTD)通过与复制蛋白A(RPA)的特异性相互作用,帮助将hUNG2靶向复制叉。在这里,我们使用具有ssDNA–dsDNA接头的底物模拟复制叉和转录R环的结构特征,探讨了RPA存在和不存在下的hUNG2活性。我们发现,当RPA与结合DNA底物的ssDNA突出端紧密结合时,hUNG2的碱基切除强烈偏向于距ssDNA-dsDNA结合21 bp或更短的尿嘧啶。在没有RPA的情况下,hUNG2仍显示尿嘧啶的8倍切除偏倚位于距连接处<10 bp处,但仅当突出端具有5'末端时。偏向靶向需要NTD,而单独使用hUNG2催化域则无法观察到。与此要求一致,发现分离出的NTD与ssDNA的结合较弱。这些发现表明,hUNG2的NTD使用RPA依赖性和RPA依赖性机制将酶靶向ssDNA-dsDNA连接。这种基于结构的特异性可以促进DNA复制过程中有效去除因dUTP掺入而产生的尿嘧啶,或另外促进免疫球蛋白类别转换重组过程中转录R环处DNA胞苷脱氨引起的尿嘧啶。

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