人类 DNA 聚合酶 η 对 N-(2-脱氧-d-赤式戊呋喃糖基)-脲 DNA 病变的旁路复制。

IF 2.9 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Biochemistry Biochemistry Pub Date : 2024-02-27 DOI:10.1021/acs.biochem.3c00569
Rachana Tomar, Songlin Li, Martin Egli* and Michael P. Stone*, 
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引用次数: 0

摘要

DNA 中的尿素病变是由胸腺嘧啶乙二醇(Tg)或 8-氧代-dG 引起的;人们认为它们的基因毒性部分是由于在容易出错的复制过程中,它们有可能容纳所有四种 dNTPs 的插入。用人类 DNA 聚合酶 η(hPol η)进行旁路复制证实,所有四种 dNTP 都插入了与脲基病变相反的位置,但嘌呤的掺入效率更高。在有 Mg2+ 离子存在的三元复制旁路复合物的 X 射线晶体结构中,进入的 dNTP 类似物 dAMPnPP、dCMPnPP、dGMPnPP 和 dTMPnPP 与脲基病变相对结合(hPol η-DNA-dNMPnPP 复合物),显示所有 dNTP 都被 hPol η 所容纳。在每个复合物中,dNMPnPP 的 Watson-Crick 面都与脲病变配对,利用了脲的胺基和羰基分别作为氢键供体或受体的能力。对于输入的 dAMPnPP 或 dGMPnPP,脲的亚氨基氮与输入的 dNMPnPP 的 N9 原子间的距离接近于 B-DNA 中 9 Å 的标准距离。而输入的 dCMPnPP 或 dTMPnPP 的相应距离约为 7 Å,不太理想。在输入嘌呤和嘧啶时,也观察到碱基堆叠相互作用得到了改善。尽管如此,在每种情况下,进入的 dNMPnPP 的 α-磷酸都靠近引物末端的 3'- 羟基,这与核苷酸转移的催化作用和所有四个核苷酸都能插入脲基切位点的观察结果是一致的。hPol η优先插入嘌呤可能部分解释了为什么 Tg 与 8-oxo-dG 病变产生的脲定向突变谱不同。
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Replication Bypass of the N-(2-Deoxy-d-erythro-pentofuranosyl)-urea DNA Lesion by Human DNA Polymerase η

Urea lesions in DNA arise from thymine glycol (Tg) or 8-oxo-dG; their genotoxicity is thought to arise in part due to their potential to accommodate the insertion of all four dNTPs during error-prone replication. Replication bypass with human DNA polymerase η (hPol η) confirmed that all four dNTPs were inserted opposite urea lesions but with purines exhibiting greater incorporation efficiency. X-ray crystal structures of ternary replication bypass complexes in the presence of Mg2+ ions with incoming dNTP analogs dAMPnPP, dCMPnPP, dGMPnPP, and dTMPnPP bound opposite urea lesions (hPol η·DNA·dNMPnPP complexes) revealed all were accommodated by hPol η. In each, the Watson–Crick face of the dNMPnPP was paired with the urea lesion, exploiting the ability of the amine and carbonyl groups of the urea to act as H-bond donors or acceptors, respectively. With incoming dAMPnPP or dGMPnPP, the distance between the imino nitrogen of urea and the N9 atoms of incoming dNMPnPP approximated the canonical distance of 9 Å in B-DNA. With incoming dCMPnPP or dTMPnPP, the corresponding distance of about 7 Å was less ideal. Improved base-stacking interactions were also observed with incoming purines vs pyrimidines. Nevertheless, in each instance, the α-phosphate of incoming dNMPnPPs was close to the 3′-hydroxyl group of the primer terminus, consistent with the catalysis of nucleotidyl transfer and the observation that all four nucleotides could be inserted opposite urea lesions. Preferential insertion of purines by hPol η may explain, in part, why the urea-directed spectrum of mutations arising from Tg vs 8-oxo-dG lesions differs.

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来源期刊
Biochemistry Biochemistry
Biochemistry Biochemistry 生物-生化与分子生物学
CiteScore
5.50
自引率
3.40%
发文量
336
审稿时长
1-2 weeks
期刊介绍: Biochemistry provides an international forum for publishing exceptional, rigorous, high-impact research across all of biological chemistry. This broad scope includes studies on the chemical, physical, mechanistic, and/or structural basis of biological or cell function, and encompasses the fields of chemical biology, synthetic biology, disease biology, cell biology, nucleic acid biology, neuroscience, structural biology, and biophysics. In addition to traditional Research Articles, Biochemistry also publishes Communications, Viewpoints, and Perspectives, as well as From the Bench articles that report new methods of particular interest to the biological chemistry community.
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