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Determinants of nucleotide sugar recognition in an archaeon DNA polymerase.

机译:古细菌DNA聚合酶中核苷酸糖识别的决定因素。

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摘要

Vent DNA polymerase normally discriminates strongly against incorporation of ribonucleotides, 3'-deoxyribonucleotides (such as cordycepin) and 2',3'-dideoxyribonucleotides. To explore the basis for this discrimination we have generated a family of variants with point mutations of residues in conserved Regions II and III and assayed incorporation of nucleo-tides with modified sugars by these variants, all of which were created in an exonuclease-deficient form of the enzyme. A Y412V variant incorporates ribonucleotides at least 200-fold more efficiently than the wild-type enzyme, consistent with Y412 acting as a 'steric gate' to specifically exclude ribonucleotides. The most striking variants tested involved changes to A488, a residue predicted to be facing away from the nucleotide binding site. The pattern of relaxed specificity at this position roughly correlates with the size of the substituted amino acid sidechain and affects a variety of modified nucleotide sugars.
机译:排气DNA聚合酶通常强烈区分核糖核苷酸,3'-脱氧核糖核苷酸(如虫草素)和2',3'-脱氧核糖核苷酸的掺入。为了探索这种区分的基础,我们在保守区II和III中产生了一个带有残基点突变的变体家族,并通过这些变体检测了核苷酸与修饰糖的掺入,所有这些均以核酸外切酶缺陷形式产生。酶。与野生型酶相比,Y412V变体整合核糖核苷酸的效率至少高200倍,这与Y412充当“空间门”以特异性排除核糖核苷酸相一致。测试的最引人注目的变体涉及A488的变化,A488是预计将远离核苷酸结合位点的残基。在该位置的松弛特异性模式与被取代的氨基酸侧链的大小大致相关,并影响多种修饰的核苷酸糖。

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