Minnick D T, Astatke M, Joyce C M, Kunkel T A
Laboratory of Molecular Genetics, NIEHS, National Institutes of Health, Research Triangle Park, North Carolina 27709, USA.
J Biol Chem. 1996 Oct 4;271(40):24954-61. doi: 10.1074/jbc.271.40.24954.
In Klenow fragment DNA polymerase, a flexible 50-amino acid subdomain at the tip of the thumb which includes two alpha helices has been suggested to interact with the duplex template-primer (Beese, L.S., Derbyshire, V. and Steitz, T.A. (1993) Science 260, 352-355). The present study investigates the properties of Klenow polymerase containing a 24-amino acid deletion (residues 590-613) that removes a portion of the tip of the thumb. The mutant polymerase has relatively normal dNTP binding and catalytic rate. However, its DNA binding affinity is reduced by more than 100-fold relative to the intact polymerase and its ability to conduct processive synthesis is also reduced. Although the mutant polymerase has relatively normal base substitution fidelity, it has strongly reduced frameshift fidelity, being especially error-prone for single nucleotide addition errors in homopolymeric runs. The addition error rate increases as the length of the reiterated sequence increases, indicative of errors initiated by template-primer strand slippage. These observations suggest a role for the tip of the thumb of Klenow polymerase in determining DNA binding, processivity and frameshift fidelity, perhaps by tracking the minor groove of the duplex DNA. The results are discussed in light of remarkably similar observations with T7 DNA polymerase in the presence or absence of thioredoxin, an accessory subunit that affects these same properties.
在克列诺片段DNA聚合酶中,有人提出拇指末端一个包含两个α螺旋的50个氨基酸的柔性亚结构域与双链模板引物相互作用(Beese, L.S., Derbyshire, V.和Steitz, T.A.(1993年)《科学》260, 352 - 355)。本研究调查了一种克列诺聚合酶的特性,该酶含有一个24个氨基酸的缺失(第590 - 613位残基),该缺失去除了拇指末端的一部分。突变型聚合酶具有相对正常的脱氧核糖核苷三磷酸(dNTP)结合能力和催化速率。然而,其与DNA的结合亲和力相对于完整聚合酶降低了100倍以上,并且其进行持续合成的能力也降低了。尽管突变型聚合酶具有相对正常的碱基替换保真度,但其移码保真度大幅降低,在同聚物序列中单个核苷酸添加错误时尤其容易出错。添加错误率随着重复序列长度的增加而增加,表明是由模板引物链滑动引发的错误。这些观察结果表明,克列诺聚合酶拇指末端在决定DNA结合、持续合成能力和移码保真度方面发挥作用,可能是通过追踪双链DNA的小沟来实现的。结合在有或没有硫氧还蛋白(一种影响这些相同特性的辅助亚基)存在的情况下对T7 DNA聚合酶的显著相似观察结果对这些结果进行了讨论。