首页> 美国卫生研究院文献>Nucleic Acids Research >Effects on NaeI-DNA recognition of the leucine to lysine substitution that transforms restriction endonuclease NaeI to a topoisomerase: a model for restriction endonuclease evolution.
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Effects on NaeI-DNA recognition of the leucine to lysine substitution that transforms restriction endonuclease NaeI to a topoisomerase: a model for restriction endonuclease evolution.

机译:亮氨酸对赖氨酸取代的NaeI-DNA识别的影响将限制性核酸内切酶NaeI转化为拓扑异构酶:一种限制性核酸内切酶进化的模型。

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摘要

Substituting lysine for leucine at position 43 (L43K) transforms NaeI from restriction endonuclease to topoisomerase and makes NaeI hypersensitive to intercalative anticancer drugs. Here we investigated DNA recognition by Nael-L43K. Using DNA competition and gel retardation assays, NaeI-L43K showed reduced affinity for DNA substrate and the ability to bind both single- and double-stranded DNA with a definite preference for the former. Sedimentation studies showed that under native conditions NaeI-L43K, like NaeI, is a dimer. Introduction of mismatched bases into double-stranded DNA significantly increased that DNA's ability to inhibit NaeI-L43K. Wild-type NaeI showed no detectable binding of either single-stranded DNA or mismatched DNA over the concentration range studied. These results demonstrate that the L43K substitution caused a significant change in recognition specificity by NaeI and imply that NaeI-L43K's topoisomerase activity is related to its ability to bind single-stranded and distorted regions in DNA. A mechanism is proposed for the evolution of the NaeI restriction-modification system from a topoisomerase/ligase by a mutation that abolished religation activity and provided a needed change in DNA recognition.
机译:在第43位(L43K)处用赖氨酸取代亮氨酸可将NaeI从限制性核酸内切酶转变为拓扑异构酶,并使NaeI对插入式抗癌药物高度敏感。在这里,我们研究了Nael-L43K对DNA的识别。使用DNA竞争和凝胶阻滞分析,NaeI-L43K显示出对DNA底物的亲和力降低,并且结合单链和双链DNA的能力明显优于前者。沉积研究表明,在自然条件下,NaeI-L43K与NaeI一样是二聚体。将错配的碱基引入双链DNA显着提高了DNA抑制NaeI-L43K的能力。野生型NaeI在所研究的浓度范围内均未检测到单链DNA或错配DNA的结合。这些结果证明L43K取代引起NaeI识别特异性的显着变化,并暗示NaeI-L43K的拓扑异构酶活性与其结合DNA中单链和扭曲区域的能力有关。提出了一种机制,用于通过突变取消NaeI限制性修饰系统从拓扑异构酶/连接酶的进化,该突变取消了连接活性并提供了所需的DNA识别变化。

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