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脊椎动物 DNA 聚合酶 N 中赋予低保真度和旁路活性的残基的进化保守性。

Evolutionary conservation of residues in vertebrate DNA polymerase N conferring low fidelity and bypass activity.

机构信息

Department of Carcinogenesis, The University of Texas Graduate School of Biomedical Sciences at Houston, USA.

出版信息

Nucleic Acids Res. 2010 Jun;38(10):3233-44. doi: 10.1093/nar/gkq048. Epub 2010 Feb 9.

Abstract

POLN is a nuclear A-family DNA polymerase encoded in vertebrate genomes. POLN has unusual fidelity and DNA lesion bypass properties, including strong strand displacement activity, low fidelity favoring incorporation of T for template G and accurate translesion synthesis past a 5S-thymine glycol (5S-Tg). We searched for conserved features of the polymerase domain that distinguish it from prokaryotic pol I-type DNA polymerases. A Lys residue (679 in human POLN) of particular interest was identified in the conserved 'O-helix' of motif 4 in the fingers sub-domain. The corresponding residue is one of the most important for controlling fidelity of prokaryotic pol I and is a nonpolar Ala or Thr in those enzymes. Kinetic measurements show that K679A or K679T POLN mutant DNA polymerases have full activity on nondamaged templates, but poorly incorporate T opposite template G and do not bypass 5S-Tg efficiently. We also found that a conserved Tyr residue in the same motif not only affects sensitivity to dideoxynucleotides, but also greatly influences enzyme activity, fidelity and bypass. Protein sequence alignment reveals that POLN has three specific insertions in the DNA polymerase domain. The results demonstrate that residues have been strictly retained during evolution that confer unique bypass and fidelity properties on POLN.

摘要

POLN 是一种在脊椎动物基因组中编码的核 A 家族 DNA 聚合酶。POLN 具有不寻常的保真度和 DNA 损伤绕过特性,包括强大的链置换活性、低保真度有利于模板 G 掺入 T 以及准确地跨损伤合成 5S-胸腺嘧啶二醇(5S-Tg)。我们搜索了区分它与原核 pol I 型 DNA 聚合酶的聚合酶结构域的保守特征。在手指亚结构域的 motif4 中的保守 'O-螺旋' 中鉴定出一个特别有趣的 Lys 残基(人 POLN 中的 679 位)。该残基是控制原核 pol I 保真度的最重要残基之一,在这些酶中是不带电的 Ala 或 Thr。动力学测量表明,K679A 或 K679T POLN 突变 DNA 聚合酶在未受损模板上具有完全活性,但在模板 G 处掺入 T 的效率差,并且不能有效地绕过 5S-Tg。我们还发现,同一 motif 中的保守 Tyr 残基不仅影响对双脱氧核苷酸的敏感性,而且极大地影响酶活性、保真度和绕过。蛋白质序列比对显示,POLN 在 DNA 聚合酶结构域中有三个特定的插入。结果表明,在进化过程中严格保留了这些残基,赋予了 POLN 独特的绕过和保真度特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cc2/2879524/ed4251ad3532/gkq048f1.jpg

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