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Promiscuous mismatch extension by human DNA polymerase lambda

机译:人类DNA聚合酶lambda的错配错配扩展

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摘要

DNA polymerase lambda (Pol λ) is one of several DNA polymerases suggested to participate in base excision repair (BER), in repair of broken DNA ends and in translesion synthesis. It has been proposed that the nature of the DNA intermediates partly determines which polymerase is used for a particular repair reaction. To test this hypothesis, here we examine the ability of human Pol λ to extend mismatched primer-termini, either on ‘open’ template-primer substrates, or on its preferred substrate, a 1 nt gapped-DNA molecule having a 5′-phosphate. Interestingly, Pol λ extended mismatches with an average efficiency of ≈10−2 relative to matched base pairs. The match and mismatch extension catalytic efficiencies obtained on gapped molecules were ≈260-fold higher than on template-primer molecules. A crystal structure of Pol λ in complex with a single-nucleotide gap containing a dG·dGMP mismatch at the primer-terminus (2.40 Å) suggests that, at least for certain mispairs, Pol λ is unable to differentiate between matched and mismatched termini during the DNA binding step, thus accounting for the relatively high efficiency of mismatch extension. This property of Pol λ suggests a potential role as a ‘mismatch extender’ during non-homologous end joining (NHEJ), and possibly during translesion synthesis.
机译:DNA聚合酶lambda(Polλ)是被建议参与碱基切除修复(BER),DNA末端断裂修复和跨病变合成的几种DNA聚合酶之一。已经提出,DNA中间体的性质部分地决定了哪种聚合酶用于特定的修复反应。为了检验这个假设,在这里我们研究了人类Polλ在“开放”模板引物底物或其首选底物(具有5'-磷酸的1 nt缺口DNA分子)上延伸错配引物-末端的能力。 。有趣的是,相对于匹配的碱基对,Polλ扩展失配的平均效率为≈10 -2 。在空缺分子上获得的匹配和错配延伸催化效率比模板引物分子上高约260倍。 Polλ的晶体结构与在引物末端(dna·dGMP不匹配)(2.40Å)具有单核苷酸间隙的复合物表明,至少对于某些错配,Polλ不能区分匹配和不匹配的末端DNA结合步骤,从而说明错配延伸的效率相对较高。 Polλ的这一特性表明在非同源末端连接(NHEJ)期间,以及可能在跨病变合成期间,作为“不匹配延伸剂”的潜在作用。

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