人工RNA- dna嵌合体核酸与RNA修饰酶的复杂结构

A. Ochi, H. Hori
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引用次数: 0

摘要

在活细胞中,RNA修饰酶与各种前体RNA形成多种形式的RNA-蛋白复合物,生成成熟的RNA分子。然而,一般来说,加工改性配合物的制备是非常困难的,因为配合物是根据酶促反应的进展解离的。到目前为止,已经设计了几种防止配合物解离的方法,例如利用小底物类似物和/或破坏酶的催化中心。然而,对于一些RNA甲基转移酶,如tRNA (Gml8)甲基转移酶[TrmH],这些方法并不成功。TrmH仅在甲基供体s -腺苷- l-蛋氨酸(AdoMet)存在时才能增强对RNA的亲和力。AdoMet类似物在TrmH的情况下不像AdoMet那样起作用,因为TrmH需要AdoMet中活化的甲基来改变酶的结构。此外,氨基酸取代对催化中心(Arg41残基)的破坏导致催化中心周围局部蛋白质结构的扰动,导致对RNA的亲和力降低。因此,需要一种稳定rna -蛋白复合物的新方法。在本研究中,我们制备了人工RNA-DNA嵌合体核酸,其中核糖核苷酸被脱氧核糖核苷酸取代。一些人工核酸与TrmH形成稳定的配合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Complex Formations between Artificial RNA-DNA Chimera Nucleic Acids and RNA Modification Enzyme
In living cells, RNA modification enzymes form multiple styles of RNA-protein complexes with various precursor RNA species for generation of mature RNA molecules. In general, however, preparation of the processing-modification complex is very difficult, because the complex is dissociated according to progress of the enzymatic reactions. Until now, several ways to prevent the dissociation of complexes have been devised, for examples utilization of small substrate analogues and/or disruption of the catalytic center of the enzyme. However, in the case of some RNA methyltransferases such as tRNA (Gml8) methyltransferase [TrmH], these approaches are not successful. TrmH enhances the affinity for RNA only in the presence of the methyl group donor, S-adenosyl-L-methionine (AdoMet). AdoMet analogues do not work like AdoMet in the case of TrmH, because TrmH requires the activated methyl group in AdoMet for structural change of the enzyme. Furthermore, disruptions of the catalytic center (Arg41 residue) by amino acid substitutions cause perturbation of the local protein structure around the catalytic center and result in decrease of the affinity for RNA. Therefore, a new approach for stabilization of the RNA-protein complex is desired. In the current study, we prepared artificial RNA-DNA chimera nucleic acids, in which ribonucleotide(s) is substituted by deoxyribonucleotide(s). Some of the artificial nucleic acids formed stable complexes with TrmH.
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