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噬菌体T4核糖核酸酶H中的单取代改变了其核酸外切酶和核酸内切酶活性之间的比例。

Single substitution in bacteriophage T4 RNase H alters the ratio between its exo- and endonuclease activities.

作者信息

Kholod Natalia, Sivogrivov Dmitry, Latypov Oleg, Mayorov Sergey, Kuznitsyn Rafail, Kajava Andrey V, Shlyapnikov Mikhail, Granovsky Igor

机构信息

Laboratory of Genetic Enzymology, Skryabin Institute of Biochemistry and Physiology of Microorganisms RAS, 5 Prospect Nauki, Pushchino, Moscow Region 142290, Russia.

Laboratory of Genetic Enzymology, Skryabin Institute of Biochemistry and Physiology of Microorganisms RAS, 5 Prospect Nauki, Pushchino, Moscow Region 142290, Russia; Federal Government-financed Educational Institution of Higher Professional Education «Vyatka State University», 36 Moskovskaya street, Kirov 610000, Russia.

出版信息

Mutat Res. 2015 Nov;781:49-57. doi: 10.1016/j.mrfmmm.2015.09.004. Epub 2015 Sep 24.

Abstract

The article describes substitutions in bacteriophage T4 RNase H which provide so called das-effect. Phage T4 DNA arrest suppression (das) mutations have been described to be capable of partially suppressing the phage DNA arrest phenotype caused by a dysfunction in genes 46 and/or 47 (also known as Mre11/Rad50 complex). Genetic mapping of das13 (one of the das mutations) has shown it to be in the region of the rnh gene encoding RNase H. Here we report that Das13 mutant of RNase H has substitutions of valine 43 and leucine 242 with isoleucines. To investigate the influence of these mutations on RNase H nuclease properties we have designed a novel in vitro assay that allows us to separate and quantify exo- or endonuclease activities of flap endonuclease. The nuclease assay in vitro showed that V43I substitution increased the ratio between exonuclease/endonuclease activities of RNase H whereas L242I substitution did not affect the nuclease activity of RNase H in vitro. However, both mutations were necessary for the full das effect in vivo. Molecular modelling of the nuclease structure suggests that V43I substitution may lead to disposition of H4 helix, responsible for the interaction with the first base pairs of 5'end of branched DNA. These structural changes may affect unwinding of the first base pairs of gapped or nicked DNA generating a short flap and therefore may stabilize the DNA-enzyme complex. L242I substitution did not affect the structure of RNase H and its role in providing das-effect remains unclear.

摘要

本文描述了噬菌体T4核糖核酸酶H中的取代,这些取代产生了所谓的das效应。噬菌体T4 DNA阻滞抑制(das)突变已被描述为能够部分抑制由基因46和/或47(也称为Mre11/Rad50复合物)功能障碍引起的噬菌体DNA阻滞表型。das13(das突变之一)的遗传定位表明它位于编码核糖核酸酶H的rnh基因区域。我们在此报告,核糖核酸酶H的Das13突变体中缬氨酸43和亮氨酸242被异亮氨酸取代。为了研究这些突变对核糖核酸酶H核酸酶特性的影响,我们设计了一种新型体外检测方法,该方法使我们能够分离并定量翼状内切核酸酶的外切核酸酶或内切核酸酶活性。体外核酸酶检测表明,V43I取代增加了核糖核酸酶H外切核酸酶/内切核酸酶活性的比例,而L242I取代在体外不影响核糖核酸酶H的核酸酶活性。然而,这两种突变对于体内完全的das效应都是必需的。核酸酶结构的分子建模表明,V43I取代可能导致H4螺旋的排列,这与分支DNA 5'端的第一个碱基对相互作用有关。这些结构变化可能会影响缺口或切口DNA第一个碱基对的解旋,产生一个短翼片,因此可能会稳定DNA-酶复合物。L242I取代不影响核糖核酸酶H的结构,其在产生das效应中的作用仍不清楚。

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