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大肠杆菌DNA聚合酶I(克列诺片段)的J螺旋调节聚合酶和3'-5'-外切核酸酶功能。

The J-helix of Escherichia coli DNA polymerase I (Klenow fragment) regulates polymerase and 3'- 5'-exonuclease functions.

作者信息

Tuske S, Singh K, Kaushik N, Modak M J

机构信息

Department of Biochemistry and Molecular Biology, University of Medicine and Dentistry-New Jersey Medical School and Graduate School of Biomedical Sciences, Newark, New Jersey 07103, USA.

出版信息

J Biol Chem. 2000 Aug 4;275(31):23759-68. doi: 10.1074/jbc.M001804200.

Abstract

To assess the functional importance of the J-helix region of Escherichia coli DNA polymerase I, we performed site-directed mutagenesis of the following five residues: Asn-675, Gln-677, Asn-678, Ile-679, and Pro-680. Of these, the Q677A mutant is polymerase-defective with no change in its exonuclease activity. In contrast, the N678A mutant has unchanged polymerase activity but shows increased mismatch-directed exonuclease activity. Interestingly, mutation of Pro-680 has a Q677A-like effect on polymerase activity and an N678A-like effect on the exonuclease activity. Mutation of Pro-680 to Gly or Gln results in a 10-30-fold reduction in k(cat) on homo- and heteropolymeric template-primers, with no significant change in relative DNA binding affinity or K(m)((dNTP)). The mutants P680G and P680Q also showed a nearly complete loss in the processive mode of DNA synthesis. Since the side chain of proline is generally non-reactive, mutation of Pro-680 may be expected to alter the physical form of the J-helix itself. The biochemical properties of P680G/P680Q together with the structural observation that J-helix assumes helical or coiled secondary structure in the polymerase or exonuclease mode-bound DNA complexes suggest that the structural alteration in the J-helix region may be responsible for the controlled shuttling of DNA between the polymerase and the exonuclease sites.

摘要

为评估大肠杆菌DNA聚合酶I的J螺旋区域的功能重要性,我们对以下五个残基进行了定点诱变:天冬酰胺-675、谷氨酰胺-677、天冬酰胺-678、异亮氨酸-679和脯氨酸-680。其中,Q677A突变体是聚合酶缺陷型,其核酸外切酶活性没有变化。相反,N678A突变体的聚合酶活性未改变,但错配导向的核酸外切酶活性增加。有趣的是,脯氨酸-680的突变对聚合酶活性有类似Q677A的影响,对核酸外切酶活性有类似N678A的影响。将脯氨酸-680突变为甘氨酸或谷氨酰胺会导致在同聚和异聚模板引物上k(cat)降低10 - 30倍,相对DNA结合亲和力或K(m)((dNTP))没有显著变化。突变体P680G和P680Q在DNA合成的持续模式中也几乎完全丧失。由于脯氨酸的侧链通常不具有反应性,脯氨酸-680的突变可能会改变J螺旋本身的物理形态。P680G/P680Q的生化特性以及J螺旋在聚合酶或核酸外切酶模式结合的DNA复合物中呈现螺旋或卷曲二级结构的结构观察结果表明,J螺旋区域的结构改变可能是DNA在聚合酶和核酸外切酶位点之间受控穿梭的原因。

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