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阿拉伯核酸与RNA杂交体被核糖核酸酶H切割的结构基础。

Structural basis of cleavage by RNase H of hybrids of arabinonucleic acids and RNA.

作者信息

Minasov G, Teplova M, Nielsen P, Wengel J, Egli M

机构信息

Department of Molecular Pharmacology and Biological Chemistry and Drug Discovery Program, Northwestern University Medical School, Chicago, IL 60611-3008, USA.

出版信息

Biochemistry. 2000 Apr 4;39(13):3525-32. doi: 10.1021/bi992792j.

Abstract

The origins of the substrate specificity of Escherichia coli RNase H1 (termed RNase H here), an enzyme that hydrolyzes the RNA strand of DNA-RNA hybrids, are not understood at present. Although the enzyme binds double-stranded RNA, no cleavage occurs with such duplexes [Lima, W. F., and Crooke, S. T. (1997) Biochemistry 36, 390]. Therefore, the hybrid substrates may not adopt a canonical A-form geometry. Furthermore, RNase H is exquisitely sensitive to chemical modification of the DNA strands in hybrid duplexes. This is particularly relevant to the RNase H-dependent pathway of antisense action. Thus, only very few of the modifications currently being evaluated as antisense therapeutics are tolerated by the enzyme, among them phosphorothioate DNA (PS-DNA). Recently, hybrids of RNA and arabinonucleic acid (ANA) as well as the 2'F-ANA analogue were shown to be substrates of RNase H [Damha, M. J., et al. (1998) J. Am. Chem. Soc. 120, 12976]. Using X-ray crystallography, we demonstrate here that ANA analogues, such as 2'F-ANA [Berger, I., et al. (1998) Nucleic Acids Res. 26, 2473] and [3.3.0]bicyclo-ANA (bc-ANA), may not be able to adopt sugar puckers that are compatible with pure A- or a B-form duplex geometries, but rather prefer the intermediate O4'-endo conformation. On the basis of the observed conformations of these ANA analogues in a DNA dodecamer duplex, we have modeled a duplex of an all-C3'-endo RNA strand and an all-O4'-endo 2'F-ANA strand. This duplex exhibits a minor groove width that is intermediate between that of A-form RNA and B-form DNA, a feature that may be exploited by the enzyme in differentiating between RNA duplexes and DNA-RNA hybrids. Therefore, the combination of the established structural and functional properties of ANA analogues helps settle existing controversies concerning the discrimination of substrates by RNase H. Knowlegde of the structure of an analogue that exhibits enhanced RNA affinity while not interfering with RNase H activity may prove helpful in the design of future antisense modifications.

摘要

大肠杆菌核糖核酸酶H1(本文称为核糖核酸酶H)可水解DNA - RNA杂交体中的RNA链,目前其底物特异性的起源尚不清楚。尽管该酶能结合双链RNA,但这种双链体不会发生切割反应[利马,W. F.,和克鲁克,S. T.(1997年)《生物化学》36卷,390页]。因此,杂交底物可能不会采用典型的A - 型几何结构。此外,核糖核酸酶H对杂交双链体中DNA链的化学修饰极为敏感。这与反义作用中依赖核糖核酸酶H的途径尤为相关。因此,目前作为反义治疗药物进行评估的修饰中,只有极少数能被该酶耐受,其中包括硫代磷酸酯DNA(PS - DNA)。最近,RNA与阿拉伯核糖核酸(ANA)以及2'F - ANA类似物的杂交体被证明是核糖核酸酶H的底物[达哈,M. J.等人(1998年)《美国化学会志》120卷,12976页]。在此,我们利用X射线晶体学证明,ANA类似物,如2'F - ANA[伯杰,I.等人(1998年)《核酸研究》第26卷,2473页]和[3.3.0]双环 - ANA(bc - ANA),可能无法采用与纯A - 型或B - 型双链几何结构兼容的糖环构象,而是更倾向于中间的O4'- 内型构象。基于在DNA十二聚体双链体中观察到的这些ANA类似物的构象情况,我们构建了一条全C3'- 内型RNA链和一条全O4'- 内型2'F - ANA链的双链体模型。这种双链体的小沟宽度介于A - 型RNA和B - 型DNA之间,这一特征可能被该酶用于区分RNA双链体和DNA - RNA杂交体。因此,ANA类似物已确定的结构和功能特性相结合,有助于解决目前关于核糖核酸酶H对底物识别的争议。了解一种既表现出增强的RNA亲和力又不干扰核糖核酸酶H活性的类似物的结构可能有助于未来反义修饰的设计。

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