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大鼠DNA聚合酶β的疏水铰链区对底物结合口袋的几何形状至关重要。

The hydrophobic hinge region of rat DNA polymerase beta is critical for substrate binding pocket geometry.

作者信息

Starcevic Daniela, Dalal Shibani, Jaeger Joachim, Sweasy Joann B

机构信息

Departments of Genetics, Therapeutic Radiology and Program in Microbiology, Yale University School of Medicine, New Haven, Connecticut 06520, USA.

出版信息

J Biol Chem. 2005 Aug 5;280(31):28388-93. doi: 10.1074/jbc.M502178200. Epub 2005 May 17.

Abstract

The hydrophobic hinge of DNA polymerase beta facilitates closing and stabilization of the enzyme once the nucleotide substrate has bound. Alteration of the hydrophobic nature of the hinge by the introduction of a hydrophilic glutamine residue in place of isoleucine 260 results in an inaccurate polymerase. The kinetic basis of infidelity is lack of discrimination during the binding of substrate. The I260Q polymerase beta variant has lower affinity than wild type enzyme for the correct substrate and much higher affinity for the incorrect substrate. Our results demonstrate that the hinge is important for formation of the substrate binding pocket. Our results are also consistent with the interpretation that DNA polymerase beta discriminates the correct from incorrect substrate during the binding step.

摘要

一旦核苷酸底物结合,DNA聚合酶β的疏水铰链有助于酶的闭合和稳定。通过引入亲水性谷氨酰胺残基取代异亮氨酸260来改变铰链的疏水性,会导致聚合酶不准确。错误掺入的动力学基础是底物结合过程中缺乏辨别能力。I260Q聚合酶β变体对正确底物的亲和力低于野生型酶,而对错误底物的亲和力则高得多。我们的结果表明,铰链对于底物结合口袋的形成很重要。我们的结果也与以下解释一致,即DNA聚合酶β在结合步骤中能够区分正确和错误的底物。

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