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首页> 外文期刊>Nucleic Acids Research >A positively charged residue of φ29 DNA polymerase, highly conserved in DNA polymerases from families A and B, is involved in binding the incoming nucleotide
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A positively charged residue of φ29 DNA polymerase, highly conserved in DNA polymerases from families A and B, is involved in binding the incoming nucleotide

机译:φ29DNA聚合酶带正电荷的残基在A和B族的DNA聚合酶中高度保守,参与结合传入的核苷酸

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摘要

Alignment of the protein sequence of DNA-dependent DNA polymerases has allowed the definition of a new motif, lying adjacent to motif B in the direction of the N-terminus and therefore named pre-motif B. Both motifs are located in the fingers subdomain, shown to rotate towards the active site to form a dNTP-binding pocket in several DNA polymerases in which a closed ternary complex pol:DNA;dNTP has been solved. The functional significance of pre-motif B has been studied by site-directed mutagenesis of φ29 DNA polymerase. The affinity for nucleotides of φ29 DNA polymerase mutant residues Ile364 and Lys371 was strongly affected in DNA- and terminal protein-primed reactions. Additionally, mutations in Ile364 affected the DNA-binding capacity of φ29 DNA polymerase. The results suggest that Lys371 of φ29 DNA polymerase, highly conserved among families A and B, interacts with the phosphate groups of the incoming nucleotide. On the other hand, the role of residue Ile364 seems to be structural, being important for both DNA and dNTP binding. Pre-motif B must therefore play an important role in binding the incoming nucleotide. Interestingly, the roles of Lys371 and Ile364 were also shown to be important in reactions without template, suggesting that φ29 DNA polymerase can achieve the closed conformation in the absence of a DNA template.
机译:DNA依赖性DNA聚合酶蛋白质序列的比对已允许定义一个新的基序,该基序在N端方向上与基序B相邻,因此命名为前基序B。这两个基序均位于手指亚结构域,图1显示了在几种DNA聚合酶中向活性位点旋转以形成dNTP结合袋,其中封闭的三元复合物pol:DNA; dNTP已被解决。前体基序B的功能意义已通过φ29DNA聚合酶的定点诱变进行了研究。 φ29DNA聚合酶突变残基Ile364和Lys371对核苷酸的亲和力在DNA和末端蛋白质引发的反应中受到很大影响。此外,Ile364中的突变影响了φ29DNA聚合酶的DNA结合能力。结果表明,φ29DNA聚合酶的Lys371,在A和B族中高度保守,与输入核苷酸的磷酸基相互作用。另一方面,残基Ile364的作用似乎是结构性的,对于DNA和dNTP结合均很重要。因此,前基序B必须在结合进入的核苷酸中起重要作用。有趣的是,在没有模板的反应中,Lys371和Ile364的作用也很重要,这表明φ29DNA聚合酶可以在没有DNA模板的情况下实现闭合构象。

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