Beard William A, Shock David D, Yang Xiao-Ping, DeLauder Saundra F, Wilson Samuel H
Laboratory of Structural Biology, NIEHS, National Institutes of Health, Research Triangle Park, North Carolina 27709, USA.
J Biol Chem. 2002 Mar 8;277(10):8235-42. doi: 10.1074/jbc.M107286200. Epub 2001 Dec 26.
Structures of DNA polymerases bound with DNA reveal that the 5'-trajectory of the template strand is dramatically altered as it exits the polymerase active site. This distortion provides the polymerase access to the nascent base pair to interrogate proper Watson-Crick geometry. Upon binding a correct deoxynucleoside triphosphate, alpha-helix N of DNA polymerase beta is observed to form one face of the binding pocket for the new base pair. Asp-276 and Lys-280 stack with the bases of the incoming nucleotide and template, respectively. To determine the role of Lys-280, site-directed mutants were constructed at this position, and the proteins were expressed and purified, and their catalytic efficiency and fidelity were assessed. The catalytic efficiency for single-nucleotide gap filling with the glycine mutant (K280G) was strongly diminished relative to wild type for templating purines (>15-fold) due to a decreased binding affinity for the incoming nucleotide. In contrast, catalytic efficiency was hardly affected by glycine substitution for templating pyrimidines (<4-fold). The fidelity of the glycine mutant was identical to the wild type enzyme for misinsertion opposite a template thymidine, whereas the fidelity of misinsertion opposite a template guanine was modestly altered. The nature of the Lys-280 side-chain substitution for thymidine triphosphate insertion (templating adenine) indicates that Lys-280 "stabilizes" templating purines through van der Waals interactions.
与DNA结合的DNA聚合酶结构显示,模板链的5'轨迹在离开聚合酶活性位点时会发生显著改变。这种扭曲使聚合酶能够接触新生碱基对,以检查其正确的沃森-克里克几何结构。在结合正确的脱氧核苷三磷酸后,观察到DNA聚合酶β的α-螺旋N形成了新碱基对结合口袋的一个面。Asp-276和Lys-280分别与进入的核苷酸和模板的碱基堆叠。为了确定Lys-280的作用,在此位置构建了定点突变体,表达并纯化了蛋白质,并评估了它们的催化效率和保真度。对于嘌呤模板,甘氨酸突变体(K280G)单核苷酸缺口填充的催化效率相对于野生型大幅降低(>15倍),这是由于对进入核苷酸的结合亲和力降低。相比之下,甘氨酸替代对嘧啶模板的催化效率几乎没有影响(<4倍)。对于与模板胸腺嘧啶相对的错配插入,甘氨酸突变体的保真度与野生型酶相同,而与模板鸟嘌呤相对的错配插入保真度则有适度改变。Lys-280侧链替代对三磷酸胸苷插入(模板腺嘌呤)的性质表明,Lys-280通过范德华相互作用“稳定”嘌呤模板。