Truniger V, Lázaro J M, Salas M, Blanco L
Centro de Biología Molecular Severo Ochoa (CSIC-UAM), Universidad Autónoma, Madrid, Spain.
EMBO J. 1996 Jul 1;15(13):3430-41.
The functional significance of the conserved motif 'YxGG/A', located between the 3'-5' exonuclease and polymerization domains of eukaryotic-type DNA polymerases, has been studied by site-directed mutagenesis in phi29 DNA polymerase. Single substitutions at this region were obtained, and 11 phi29 DNA polymerase mutant derivatives were overproduced in Escherichia coli and purified to homogeneity. Nine mutants showed an altered polymerase/3'-5' exonuclease balance on a template/primer DNA structure, giving rise to three different mutant phenotypes: (i) favored polymerization (high pol/exo ratio); (ii) favored exonucleolysis (low pol/exo ratio); and (iii) favored exonucleolysis and null polymerization. Interestingly, these three different phenotypes could be obtained by mutating a single amino acid at the 'YxGG/A' motif. All different phenotypes could be directly related to defects in DNA binding at a particular active site. Thus, a high pol/exo ratio was related to a poor stability at the 3'-5' exonuclease active site. On the contrary, a low pol/exo ratio or null polymerization capacity was related to a poor stability at the polymerization active site and either a normal or an increased accessibility to the exonuclease active site. These results allow us to propose that this motif, located in the connecting region between the N-terminal and C-terminal domains, has a primary role in DNA binding, playing a critical role in the coordination or cross-talk between synthesis and degradation.
位于真核生物型DNA聚合酶3'-5'核酸外切酶结构域和聚合结构域之间的保守基序“YxGG/A”的功能意义,已通过在phi29 DNA聚合酶中进行定点诱变进行了研究。在该区域获得了单一位点的取代,并在大肠杆菌中过量表达了11种phi29 DNA聚合酶突变衍生物,并纯化至均一。九个突变体在模板/引物DNA结构上显示出聚合酶/3'-5'核酸外切酶平衡的改变,产生了三种不同的突变表型:(i)有利于聚合(高pol/exo比率);(ii)有利于核酸外切(低pol/exo比率);以及(iii)有利于核酸外切且聚合无效。有趣的是,通过在“YxGG/A”基序处突变单个氨基酸可以获得这三种不同的表型。所有不同的表型都可能与特定活性位点处的DNA结合缺陷直接相关。因此,高pol/exo比率与3'-5'核酸外切酶活性位点的稳定性差有关。相反,低pol/exo比率或聚合能力无效与聚合活性位点的稳定性差以及核酸外切酶活性位点的正常或增加的可及性有关。这些结果使我们能够提出,位于N端和C端结构域之间连接区域的这个基序在DNA结合中起主要作用,在合成与降解之间的协调或相互作用中起关键作用。