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Engineering TaqII bifunctional endonuclease DNA recognition fidelity: the effect of a single amino acid substitution within the methyltransferase catalytic site

机译:工程TaqII双功能核酸内切酶DNA识别保真度:甲基转移酶催化位点内单个氨基酸取代的影响

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The aim of this study was to improve a useful molecular tool-TaqII restriction endonuclease-methyltransferase-by rational protein engineering, as well as to show an application of our novel method of restriction endonuclease activity modulation through a single amino acid change in the NPPY motif of methyltransferase. An amino acid change was introduced using site-directed mutagenesis into the taqIIRM gene. The mutated gene was expressed in Escherichia coli. The protein variant was purified and characterized. Previously, we described a TspGWI variant with an amino acid change in the methyltransferase motif IV. Here, we investigate a complex, pleiotropic effect of an analogous amino acid change on its homologue-TaqII. The methyltransferase activity is reduced, but not abolished, while TaqII restriction endonuclease can be reactivated by sinefungin, with an increased DNA recognition fidelity. The general method for engineering of the IIS/IIC/IIG restriction endonuclease activity/fidelity is developed along with the generation of an improved TaqII enzyme for biotechnological applications. A successful application of our novel strategy for restriction endonuclease activity/fidelity alteration, based on bioinformatics analyses, mutagenesis and the use of cofactor-analogue activity modulation, is presented.
机译:这项研究的目的是通过合理的蛋白质工程来改进有用的分子工具TaqII限制性内切核酸酶-甲基转移酶,并展示我们通过限制NPPY基序中的单个氨基酸改变限制内切核酸酶活性的新方法的应用甲基转移酶。使用定点诱变将氨基酸变化引入taqIIRM基因。突变的基因在大肠杆菌中表达。蛋白质变体被纯化和表征。以前,我们描述了一个TspGWI变体,其甲基转移酶基序IV中具有氨基酸变化。在这里,我们调查了类似的氨基酸变化对其同系物TaqII的复杂,多效作用。甲基转移酶的活性降低了但没有消除,而TaqII限制性核酸内切酶可以被西芬芬净重新激活,并具有增强的DNA识别保真度。 IIS / IIC / IIG限制性核酸内切酶活性/保真度工程化的一般方法是随着生物技术应用的改良TaqII酶的产生而开发的。提出了基于生物信息学分析,诱变和辅因子类似物活性调节的使用,我们的限制性内切酶活性/保真度改变新策略的成功应用。

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