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通过在线探测和铽(III)切割监测RNA中的全局结构变化和特定金属离子结合位点。

Monitoring global structural changes and specific metal-ion-binding sites in RNA by in-line probing and Tb(III) cleavage.

作者信息

Choudhary Pallavi K, Gallo Sofia, Sigel Roland K O

机构信息

Institute of Inorganic Chemistry, University of Zurich, Zurich, Switzerland.

出版信息

Methods Mol Biol. 2014;1086:143-58. doi: 10.1007/978-1-62703-667-2_8.

Abstract

In this chapter we describe the use of two methods, in-line probing as well as terbium(III) cleavage. Both methods can be applied to RNAs of any size, structure, and function. Aside from revealing directly metal ion-binding sites these techniques also provide structural information for longer RNA sequences that are out of range to be analyzed with other techniques such as NMR. The cleavage pattern derived from in-line probing experiments reflects local and overall conformational changes in RNA upon the addition of metal ions, metal complexes, or other ligands. On the other side, terbium(III) cleavage experiments are applied to locate specific metal ion-binding sites in RNA molecules.

摘要

在本章中,我们描述了两种方法的应用,即在线探测法和铽(III)切割法。这两种方法可应用于任何大小、结构和功能的RNA。除了直接揭示金属离子结合位点外,这些技术还能为其他技术(如核磁共振)无法分析的较长RNA序列提供结构信息。在线探测实验得到的切割模式反映了添加金属离子、金属配合物或其他配体后RNA局部和整体的构象变化。另一方面,铽(III)切割实验用于定位RNA分子中的特定金属离子结合位点。

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