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人类DNA聚合酶α的突变研究。在α类DNA聚合酶中第二保守区域的丝氨酸867参与引物结合和错配引物延伸。

Mutational studies of human DNA polymerase alpha. Serine 867 in the second most conserved region among alpha-like DNA polymerases is involved in primer binding and mispair primer extension.

作者信息

Dong Q, Copeland W C, Wang T S

机构信息

Department of Pathology, Stanford University School of Medicine, California 94305-5324.

出版信息

J Biol Chem. 1993 Nov 15;268(32):24175-82.

PMID:8226964
Abstract

The second most conserved region of alpha-like DNA polymerases, region II, spans a block of 40 amino acid residues centered at the core sequence -DFNSLYPSII-. In the previous paper, we described mutational studies of 3 amino acid residues in region II which includes 2 amino acid residues in the core sequence. We showed that residues Asp860 and Tyr865 in the core sequence are involved in substrate deoxynucleotide triphosphate (dNTP) binding. We further showed that the phenyl moiety of the Tyr865 side chain interacts with the incoming dNTP and is responsible for the misinsertion fidelity of the enzyme. In this report, we investigated the function of 2 serine residues, Ser863 and Ser867, in this core sequence. Mutation of these 2 Ser residues to either Ala or Thr yielded mutant enzymes with similar Km for dNTPs, kcat, processivity, and misinsertion fidelity of DNA synthesis as the wild type enzyme. However, mutation of Ser867 to Ala demonstrated a 30-fold increase in Km for primer-template and a 5-fold higher KD for binding primer-template. DNA footprinting experiments of primer with the dideoxynucleotide terminus indicated that the structural feature of the primer recognized by Ser867 is the 3'-OH terminus. Single-stranded DNA inhibition data suggest that removal of the hydroxyl side chain of Ser867 affects the polymerase's interaction with primer and not with template. Mutation of Ser867 to Ala also decreases the mutant enzyme's Km for dNTP to extend a mispaired primer and thus enhances its capacity to extend a mispaired primer terminus. These data support the conclusion that the hydroxyl side chain of Ser867 of human DNA polymerase alpha is involved in primer interaction during DNA synthesis and plays an essential role in mispair extension fidelity of DNA synthesis.

摘要

α类DNA聚合酶的第二保守区域,即区域II,跨越以核心序列-DFNSLYPSII-为中心的40个氨基酸残基片段。在之前的论文中,我们描述了对区域II中3个氨基酸残基的突变研究,其中包括核心序列中的2个氨基酸残基。我们发现核心序列中的天冬氨酸860(Asp860)和酪氨酸865(Tyr865)残基参与底物脱氧核苷三磷酸(dNTP)的结合。我们进一步表明,酪氨酸865侧链的苯环部分与进入的dNTP相互作用,并决定了该酶的错配插入保真度。在本报告中,我们研究了该核心序列中2个丝氨酸残基,即丝氨酸863(Ser863)和丝氨酸867(Ser867)的功能。将这2个丝氨酸残基突变为丙氨酸或苏氨酸后,所得突变酶的dNTP Km值、催化常数、持续合成能力以及DNA合成的错配插入保真度与野生型酶相似。然而,将丝氨酸867突变为丙氨酸后,引物-模板的Km值增加了30倍,引物-模板结合的解离常数(KD)提高了5倍。用双脱氧核苷酸末端的引物进行DNA足迹实验表明,丝氨酸867识别的引物结构特征是3'-羟基末端。单链DNA抑制数据表明,去除丝氨酸867的羟基侧链会影响聚合酶与引物的相互作用,而不影响与模板的相互作用。将丝氨酸867突变为丙氨酸还会降低突变酶延伸错配引物的dNTP Km值,从而增强其延伸错配引物末端的能力。这些数据支持以下结论:人DNA聚合酶α的丝氨酸867的羟基侧链在DNA合成过程中参与引物相互作用,并在DNA合成的错配延伸保真度中起关键作用。

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