Bernad A, Blanco L, Lázaro J M, Martín G, Salas M
Centro de Biologia Molecular (CSIC-UAM), Universidad Autónoma, Madrid, Spain.
Cell. 1989 Oct 6;59(1):219-28. doi: 10.1016/0092-8674(89)90883-0.
The 3'----5' exonuclease active site of E. coli DNA polymerase I is predicted to be conserved for both prokaryotic and eukaryotic DNA polymerases based on amino acid sequence homology. Three amino acid regions containing the critical residues in the E. coli DNA polymerase I involved in metal binding, single-stranded DNA binding, and catalysis of the exonuclease reaction are located in the amino-terminal half and in the same linear arrangement in several prokaryotic and eukaryotic DNA polymerases. Site-directed mutagenesis at the predicted exonuclease active site of the phi 29 DNA polymerase, a model enzyme for prokaryotic and eukaryotic alpha-like DNA polymerases, specifically inactivated the 3'----5' exonuclease activity of the enzyme. These results reflect a high evolutionary conservation of this catalytic domain. Based on structural and functional data, a modular organization of enzymatic activities in prokaryotic and eukaryotic DNA polymerases is also proposed.
基于氨基酸序列同源性预测,大肠杆菌DNA聚合酶I的3'→5'核酸外切酶活性位点在原核和真核DNA聚合酶中都是保守的。在大肠杆菌DNA聚合酶I中,包含参与金属结合、单链DNA结合以及核酸外切酶反应催化的关键残基的三个氨基酸区域位于氨基末端的一半,并且在几种原核和真核DNA聚合酶中呈相同的线性排列。在phi 29 DNA聚合酶(一种原核和真核α样DNA聚合酶的模型酶)的预测核酸外切酶活性位点进行定点诱变,特异性地使该酶的3'→5'核酸外切酶活性失活。这些结果反映了该催化结构域的高度进化保守性。基于结构和功能数据,还提出了原核和真核DNA聚合酶中酶活性的模块化组织。