生物
DNA复制
DNA
DNA聚合酶
分子生物学
DNA钳
聚合酶
原点识别复合体
碱基对
复制因子C
DNA合成
真核细胞DNA复制
细胞生物学
生物化学
核糖核酸
基因
逆转录酶
作者
Ke Du,Xiangqian Zhang,Zhirong Zou,Bianbian Li,Shiling Gu,Shuming Zhang,Xin Qu,Yihui Ling,Huidong Zhang
出处
期刊:DNA Repair
[Elsevier]
日期:2019-06-01
卷期号:78: 81-90
被引量:14
标识
DOI:10.1016/j.dnarep.2019.03.015
摘要
N6-methyladenine (6mA), as a newly reported epigenetic marker, plays significant roles in regulation of various biological processes in eukaryotes. However, the effect of 6mA on human DNA replication remain elusive. In this work, we used Y-family human DNA polymerase η as a model to investigate the kinetics of bypass of 6mA by hPol η. We found 6mA and its intermediate hypoxanthine (I) on template partially inhibited DNA replication by hPol η. dTMP incorporation opposite 6mA and dCMP incorporation opposite I can be considered as correct incorporation. However, both 6mA and I reduced correct incorporation efficiency, next-base extension efficiency, and the priority in extension beyond correct base pair. Both dTMP incorporation opposite 6mA and dCTP opposite I showed fast burst phases. However, 6mA and I reduced the burst incorporation rates (kpol) and increased the dissociation constant (Kd,dNTP), compared with that of dTMP incorporation opposite unmodified A. Biophysical binding assays revealed that both 6mA and I on template reduced the binding affinity of hPol η to DNA in binary or ternary complex compared with unmodified A. All the results explain the inhibition effects of 6mA and I on DNA replication by hPol η, providing new insight in the effects of epigenetically modified 6mA on human DNA replication.
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