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首页> 外文期刊>The Journal of biological chemistry >A Substitution in the Fingers Domain of DNA Polymerase δ Reduces Fidelity by Altering Nucleotide Discrimination in the Catalytic Site
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A Substitution in the Fingers Domain of DNA Polymerase δ Reduces Fidelity by Altering Nucleotide Discrimination in the Catalytic Site

机译:DNA聚合酶的手指结构域δ通过改变催化部位中的核苷酸鉴别来减少润良力

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摘要

DNA polymerase δ (Pol δ) is one of the major replicative DNA polymerases in eukaryotic cells, catalyzing lagging strand synthesis as well as playing a role in many DNA repair pathways. The catalytic site for polymerization consists of a palm domain and mobile fingers domain that opens and closes each catalytic cycle. We explored the effect of amino acid substitutions in a region of the highly conserved sequence motif B in the fingers domain on replication fidelity. A novel substitution, A699Q, results in a marked increase in mutation rate at the yeast CAN1 locus, and is synthetic lethal with both proofreading deficiency and mismatch repair deficiency. Modeling the A699Q mutation onto the crystal structure of Saccharomyces cerevisiae Pol δ template reveals four potential contacts for A699Q but not for A699. We substituted alanine for each of these residues and determined that an interaction with multiple residues of the N-terminal domain is responsible for the mutator phenotype. The corresponding mutation in purified human Pol δ results in a similar 30-fold increase in mutation frequency when copying gapped DNA templates. Sequence analysis indicates that the most characteristic mutation is a guanine-to-adenine (G to A) transition. The increase in deoxythymidine 5′-triphosphate-G mispairs was confirmed by performing steady state single nucleotide addition studies. Our combined data support a model in which the Ala-to-Gln substitution in the fingers domain of Pol δ results in an interaction with the N-terminal domain that affects the base selectivity of the enzyme.
机译:DNA聚合酶δ(POLδ)是真核细胞中的主要复制DNA聚合酶之一,催化滞留链合成以及在许多DNA修复途径中发挥作用。用于聚合的催化位点包括棕榈域和移动手指结构域,其打开和关闭每个催化循环。我们探讨了氨基酸取代在手指结构域的高度保守序列图中的区域中的作用对复制保真度。一种新颖的替代A699Q,导致酵母CAN1基因座的突变率的显着增加,并且具有校对缺陷和不匹配修复缺陷的合成致命。将A699Q突变建模到酿酒酵母曲米氏菌δ模板的晶体结构上,揭示了A699Q的四个潜在触点,但不是A699。对于这些残基中的每一个取代丙氨酸,并确定与N-末端结构域的多个残基的相互作用是突变表型的原因。纯化的人POLδ的相应突变导致在复制盖DNA模板时相似的突变频率的30倍。序列分析表明最特征突变是鸟嘌呤 - 腺嘌呤(G至A)转变。通过进行稳态单核苷酸添加研究,确认脱氧尿苷5'-三磷酸-G错误的增加。我们的组合数据支持一种模型,其中POLδ的手指结构域中的ALA-GLN取代导致与影响酶的基本选择性的N-末端结构域的相互作用。

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