Derbyshire V, Freemont P S, Sanderson M R, Beese L, Friedman J M, Joyce C M, Steitz T A
Department of Molecular Biophysics and Biochemistry, Yale University Medical School, New Haven, CT 06510.
Science. 1988 Apr 8;240(4849):199-201. doi: 10.1126/science.2832946.
Site-directed mutagenesis of the large fragment of DNA polymerase I (Klenow fragment) yielded two mutant proteins lacking 3',5'-exonuclease activity but having normal polymerase activity. Crystallographic analysis of the mutant proteins showed that neither had any alteration in protein structure other than the expected changes at the mutation sites. These results confirmed the presumed location of the exonuclease active site on the small domain of Klenow fragment and its physical separation from the polymerase active site. An anomalous scattering difference Fourier of a complex of the wild-type enzyme with divalent manganese ion and deoxythymidine monophosphate showed that the exonuclease active site has binding sites for two divalent metal ions. The properties of the mutant proteins suggest that one metal ion plays a role in substrate binding while the other is involved in catalysis of the exonuclease reaction.
对DNA聚合酶I大片段(克列诺片段)进行定点诱变,产生了两种突变蛋白,它们缺乏3',5'-外切核酸酶活性,但具有正常的聚合酶活性。对突变蛋白的晶体学分析表明,除了突变位点预期的变化外,两者的蛋白质结构均无任何改变。这些结果证实了外切核酸酶活性位点在克列诺片段小结构域上的推测位置及其与聚合酶活性位点的物理分离。野生型酶与二价锰离子和脱氧胸苷单磷酸复合物的反常散射差分傅里叶变换表明,外切核酸酶活性位点有两个二价金属离子的结合位点。突变蛋白的特性表明,一种金属离子在底物结合中起作用,而另一种则参与外切核酸酶反应的催化。