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DNA聚合酶I的作用机制:核酸外切酶/聚合酶活性转换以及焦磷酸解反应和错配掺入反应的DNA序列依赖性

Mechanism of DNA polymerase I: exonuclease/polymerase activity switch and DNA sequence dependence of pyrophosphorolysis and misincorporation reactions.

作者信息

Mizrahi V, Benkovic P, Benkovic S J

出版信息

Proc Natl Acad Sci U S A. 1986 Aug;83(16):5769-73. doi: 10.1073/pnas.83.16.5769.

Abstract

Mechanistic features of several processes involved in the idling-turnover reaction catalyzed by the large (Klenow) fragment of Escherichia coli DNA polymerase I have been established. The exonuclease----polymerase activity switch involved in the excision/incorporation mode of idling-turnover occurs without an intervening dissociation of the enzyme from its DNA substrate. Comparative studies on the pyrophosphorolysis kinetics of related DNA substrates indicate a significant dependence of the reaction rate upon the DNA sequence within the duplex region upstream of the primer-template junction. Finally, a gel electrophoretic analysis of the products of the idling-turnover reaction has provided direct evidence for an alternative DNA sequence-dependent misincorporation/excision pathway.

摘要

大肠杆菌DNA聚合酶I大片段(Klenow片段)催化的空转-周转反应中涉及的几个过程的机制特征已经确定。空转-周转的切除/掺入模式中涉及的核酸外切酶-聚合酶活性转换在酶与其DNA底物没有中间解离的情况下发生。对相关DNA底物焦磷酸解动力学的比较研究表明,反应速率强烈依赖于引物-模板连接处上游双链区域内的DNA序列。最后,对空转-周转反应产物的凝胶电泳分析为另一种DNA序列依赖性错掺入/切除途径提供了直接证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da60/386376/073493493f32/pnas00320-0026-a.jpg

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