首页> 美国卫生研究院文献>The EMBO Journal >Primer-terminus stabilization at the 3-5 exonuclease active site of phi29 DNA polymerase. Involvement of two amino acid residues highly conserved in proofreading DNA polymerases.
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Primer-terminus stabilization at the 3-5 exonuclease active site of phi29 DNA polymerase. Involvement of two amino acid residues highly conserved in proofreading DNA polymerases.

机译:phi29 DNA聚合酶3-5核酸外切酶活性位点的引物末端稳定。在校对DNA聚合酶中高度保守的两个氨基酸残基的参与。

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摘要

By site-directed mutagenesis in phi29 DNA polymerase, we have analyzed the functional importance of two evolutionarily conserved residues belonging to the 3'-5' exonuclease domain of DNA-dependent DNA polymerases. In Escherichia coli DNA polymerase I, these residues are Thr358 and Asn420, shown by crystallographic analysis to be directly acting as single-stranded DNA (ssDNA) ligands at the 3'-5' exonuclease active site. On the basis of these structural data, single substitution of the corresponding residues of phi29 DNA polymerase, Thr15 and Asn62, produced enzymes with a very reduced or altered capacity to bind ssDNA. Analysis of the residual 3'-5' exonuclease activity of these mutant derivatives on ssDNA substrates allowed us to conclude that these two residues do not play a direct role in the catalysis of the reaction. On the other hand, analysis of the 3'-5' exonuclease activity on either matched or mismatched primer/template structures showed a critical role of these two highly conserved residues in exonucleolysis under polymerization conditions, i.e. in the proofreading of DNA polymerization errors, an evolutionary advantage of most DNA-dependent DNA polymerases. Moreover, in contrast to the dual role in 3'-5' exonucleolysis and strand displacement previously observed for phi29 DNA polymerase residues acting as metal ligands, the contribution of residues Thr15 and Asn62 appears to be restricted to the proofreading function, by stabilization of the frayed primer-terminus at the 3'-5' exonuclease active site.
机译:通过在phi29 DNA聚合酶中的定点诱变,我们分析了属于DNA依赖性DNA聚合酶3'-5'核酸外切酶结构域的两个进化保守残基的功能重要性。在大肠杆菌DNA聚合酶I中,这些残基是Thr358和Asn420,通过晶体学分析显示它们直接充当3'-5'核酸外切酶活性位点的单链DNA(ssDNA)配体。根据这些结构数据,phi29 DNA聚合酶,Thr15和Asn62的相应残基的单取代产生的酶结合ssDNA的能力大大降低或改变。对这些突变衍生物在ssDNA底物上的残留3'-5'核酸外切酶活性的分析使我们得出结论,这两个残基在催化反应中没有直接作用。另一方面,对3'-5'核酸外切酶在匹配的或错配的引物/模板结构上的活性的分析表明,这两个高度保守的残基在聚合条件下的核酸外切中至关重要,即在DNA聚合错误的校对中。大多数DNA依赖性DNA聚合酶的进化优势。此外,与先前观察到的充当金属配体的phi29 DNA聚合酶残基在3'-5'核酸外切和链置换中的双重作用相反,Thr15和Asn62残基的作用似乎是通过稳定三聚体而限制了校对功能在3'-5'核酸外切酶活性位点处出现磨损的引物末端。

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