Department of Therapeutic Radiology, Yale University School of Medicine, New Haven, Connecticut 06520, USA.
J Am Chem Soc. 2011 Apr 27;133(16):6279-87. doi: 10.1021/ja111099b. Epub 2011 Mar 31.
DNA polymerase beta (pol beta) is the main polymerase involved in the base excision repair pathway responsible for repairing damaged bases in the DNA. Previous studies on the H285D mutant of pol beta suggested that the C-terminal region of the polymerase is important for polymerase function. In this study, the C-terminal region of pol beta was mutated to assess its role in polymerization. Kinetic experiments showed that the C-terminal region is required for wild-type polymerase activity. Additionally, an interaction between the fingers and palm subdomain revealed itself to be required for polymerase activity. The E316R mutant of pol beta was shown to have a 29,000-fold reduction in polymerization rate with no reduction in nucleotide binding, suggesting that there exists a noncovalent mechanistic step between nucleotide binding and nucleophilic attack of the primer 3'-hydroxyl group on the α-PO(4) of the nucleotide. Molecular modeling studies of the E316R mutant demonstrate that disrupting the interaction between Arg182 and Glu316 disrupts the packing of side chains in the hydrophobic hinge region and may be hampering the conformational change during polymerization. Taken together, these data demonstrate that the triad interaction of Arg182, Glu316, and Arg333 is crucial for polymerase function.
DNA 聚合酶 β(pol β)是参与碱基切除修复途径的主要聚合酶,负责修复 DNA 中受损的碱基。先前对 pol β 的 H285D 突变体的研究表明,聚合酶的 C 末端区域对于聚合酶功能很重要。在这项研究中,突变了 pol β 的 C 末端区域,以评估其在聚合中的作用。动力学实验表明,C 末端区域是野生型聚合酶活性所必需的。此外,还揭示了手指和手掌亚结构域之间的相互作用对于聚合酶活性是必需的。pol β 的 E316R 突变体的聚合速率降低了 29000 倍,但核苷酸结合没有减少,这表明在核苷酸的α-PO(4)上的引物 3'-羟基的亲核攻击与核苷酸结合之间存在非共价的机制步骤。E316R 突变体的分子建模研究表明,破坏 Arg182 和 Glu316 之间的相互作用会破坏疏水铰链区域中侧链的堆积,并且可能会阻碍聚合过程中的构象变化。总之,这些数据表明 Arg182、Glu316 和 Arg333 的三联体相互作用对于聚合酶功能至关重要。