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The role of RNA structure in the interaction of U1A protein with U1 hairpin II RNA.RNA结构在U1A蛋白与U1发夹II RNA相互作用中的作用。
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构象受限核苷酸作为RNA结构-功能关系的探针。

Conformationally restricted nucleotides as a probe of structure-function relationships in RNA.

作者信息

Julien Kristine R, Sumita Minako, Chen Po-Han, Laird-Offringa Ite A, Hoogstraten Charles G

机构信息

Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, Michigan 48824, USA.

出版信息

RNA. 2008 Aug;14(8):1632-43. doi: 10.1261/rna.866408. Epub 2008 Jul 2.

DOI:10.1261/rna.866408
PMID:18596252
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2491483/
Abstract

We introduce the use of commercially available locked nucleic acids (LNAs) as a functional probe in RNA. LNA nucleotides contain a covalent linkage that restricts the pseudorotation phase of the ribose to C3'-endo (A-form). Introduction of an LNA at a single site thus allows the role of ribose structure and dynamics in RNA function to be assessed. We apply LNA probing at multiple sites to analyze self-cleavage in the lead-dependent ribozyme (leadzyme), thermodynamic stability in the UUCG tetraloop, and the kinetics of recognition of U1A protein by U1 snRNA hairpin II. In the leadzyme, locking a single guanosine residue into the C3'-endo pucker increases the catalytic rate by a factor of 20, despite the fact that X-ray crystallographic and NMR structures of the leadzyme ground state reported a C2'-endo conformation at this site. These results strongly suggest that a conformational change at this position is critical for catalytic function. Functional insights obtained in all three systems demonstrate the highly general applicability of LNA probing in analysis of the role of ribose orientation in RNA structure, dynamics, and function.

摘要

我们介绍了使用市售的锁核酸(LNA)作为RNA中的功能探针。LNA核苷酸含有一个共价键,该共价键将核糖的假旋转相限制为C3'-内型(A-型)。因此,在单个位点引入LNA可以评估核糖结构和动力学在RNA功能中的作用。我们在多个位点应用LNA探测,以分析铅依赖型核酶(铅酶)中的自我切割、UUCG四环中的热力学稳定性以及U1 snRNA发夹II对U1A蛋白的识别动力学。在铅酶中,将单个鸟苷残基锁定为C3'-内型褶皱可使催化速率提高20倍,尽管铅酶基态的X射线晶体学和核磁共振结构在此位点报告为C2'-内型构象。这些结果强烈表明该位置的构象变化对催化功能至关重要。在所有三个系统中获得的功能见解证明了LNA探测在分析核糖取向在RNA结构、动力学和功能中的作用方面具有高度普遍的适用性。