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DNA聚合酶β的底物特异性:“A规则”的侧链调节

DNA polymerase beta substrate specificity: side chain modulation of the "A-rule".

作者信息

Beard William A, Shock David D, Batra Vinod K, Pedersen Lars C, Wilson Samuel H

机构信息

Laboratory of Structural Biology, NIEHS, National Institutes of Health, Research Triangle Park, North Carolina 27709, USA.

出版信息

J Biol Chem. 2009 Nov 13;284(46):31680-9. doi: 10.1074/jbc.M109.029843. Epub 2009 Sep 15.

Abstract

Apurinic/apyrimidinic (AP) sites are continuously generated in genomic DNA. Left unrepaired, AP sites represent noninstructional premutagenic lesions that are impediments to DNA synthesis. When DNA polymerases encounter an AP site, they generally insert dAMP. This preferential insertion is referred to as the A-rule. Crystallographic structures of DNA polymerase (pol) beta, a family X polymerase, with active site mismatched nascent base pairs indicate that the templating (i.e. coding) base is repositioned outside of the template binding pocket thereby diminishing interactions with the incorrect incoming nucleotide. This effectively produces an abasic site because the template pocket is devoid of an instructional base. However, the template pocket is not empty; an arginine residue (Arg-283) occupies the space vacated by the templating nucleotide. In this study, we analyze the kinetics of pol beta insertion opposite an AP site and show that the preferential incorporation of dAMP is lost with the R283A mutant. The crystallographic structures of pol beta bound to gapped DNA with an AP site analog (tertrahydrofuran) in the gap (binary complex) and with an incoming nonhydrolyzable dATP analog (ternary complex) were solved. These structures reveal that binding of the dATP analog induces a closed polymerase conformation, an unstable primer terminus, and an upstream shift of the templating residue even in the absence of a template base. Thus, dATP insertion opposite an abasic site and dATP misinsertions have common features.

摘要

无嘌呤/无嘧啶(AP)位点在基因组DNA中持续产生。若不进行修复,AP位点代表非指令性的前诱变损伤,会阻碍DNA合成。当DNA聚合酶遇到AP位点时,它们通常会插入dAMP。这种优先插入被称为A规则。X家族DNA聚合酶β(polβ)与活性位点错配的新生碱基对的晶体结构表明,模板(即编码)碱基重新定位到模板结合口袋之外,从而减少了与错误进入核苷酸的相互作用。这实际上产生了一个无碱基位点,因为模板口袋中没有指令性碱基。然而,模板口袋并非空的;一个精氨酸残基(Arg-283)占据了模板核苷酸腾出的空间。在本研究中,我们分析了polβ在AP位点对面插入的动力学,并表明R283A突变体失去了dAMP的优先掺入。解析了polβ与间隙中有AP位点类似物(四氢呋喃)的缺口DNA结合的晶体结构(二元复合物)以及与进入的不可水解dATP类似物结合的晶体结构(三元复合物)。这些结构表明,即使在没有模板碱基的情况下,dATP类似物的结合也会诱导聚合酶构象闭合、引物末端不稳定以及模板残基向上游移动。因此,在无碱基位点对面插入dATP和dATP错插入具有共同特征。

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