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Probing RNA structure and function by nucleotide analog interference mapping.通过核苷酸类似物干扰图谱探究RNA结构与功能。
Curr Protoc Nucleic Acid Chem. 2004 Sep;Chapter 6:Unit 6.9. doi: 10.1002/0471142700.nc0609s17.
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A kinetic intermediate that regulates proper folding of a group II intron RNA.一种调节II类内含子RNA正确折叠的动力学中间体。
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Folding of group II introns: a model system for large, multidomain RNAs?II类内含子的折叠:大型多结构域RNA的模型系统?
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Backbone and nucleobase contacts to glucosamine-6-phosphate in the glmS ribozyme.在glmS核酶中,骨架和核碱基与6-磷酸葡萄糖胺的接触。
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Fast Fenton footprinting: a laboratory-based method for the time-resolved analysis of DNA, RNA and proteins.快速芬顿足迹法:一种基于实验室的用于DNA、RNA和蛋白质时间分辨分析的方法。
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An obligate intermediate along the slow folding pathway of a group II intron ribozyme.II类内含子核酶慢折叠途径中的一个必需中间体。
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Linking the group II intron catalytic domains: tertiary contacts and structural features of domain 3.连接II组内含子催化结构域:结构域3的三级接触和结构特征
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Perturbation of the hierarchical folding of a large RNA by the destabilization of its Scaffold's tertiary structure.通过其支架三级结构的去稳定化对大型RNA的分层折叠进行扰动。
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通过核苷酸类似物干扰图谱法(NAIM)剖析RNA折叠

Dissecting RNA folding by nucleotide analog interference mapping (NAIM).

作者信息

Waldsich Christina

机构信息

Max F. Perutz Laboratories, Department of Biochemistry, University of Vienna, Dr. Bohrgasse 9/5, Vienna 1030, Austria.

出版信息

Nat Protoc. 2008;3(5):811-23. doi: 10.1038/nprot.2008.45.

DOI:10.1038/nprot.2008.45
PMID:18451789
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2873565/
Abstract

Nucleotide analog interference mapping (NAIM) is a powerful chemogenetic approach that allows RNA structure and function to be characterized at the atomic level. Random modifications of base or backbone moieties are incorporated into the RNA transcript as nucleotide analog phosphorothioates. The resulting RNA pool is then subjected to a stringent selection step, in which the RNA has to accomplish a specific task, for example, folding. RNA functional groups important for this process can be identified by physical isolation of the functional and the nonfunctional RNA molecules and subsequent mapping of the modified nucleotide positions in both RNA populations by iodine cleavage of the susceptible phosphorothioate linkage. This approach has been used to analyze a variety of aspects of RNA biochemistry, including RNA structure, catalysis and ligand interaction. Here, I describe how to set up a NAIM assay for studying RNA folding. This protocol can be readily adapted to study any RNAs and their properties. The time required to complete the experiment is dependent on the length of the RNA and the number of atomic modifications tested. In general, a single NAIM experiment can be completed in 1-2 weeks, but expect a time frame of several weeks to obtain reliable and statistically meaningful results.

摘要

核苷酸类似物干扰作图(NAIM)是一种强大的化学遗传学方法,可在原子水平上表征RNA的结构和功能。碱基或主链部分的随机修饰作为核苷酸类似物硫代磷酸酯掺入RNA转录本中。然后对所得的RNA文库进行严格的筛选步骤,在此步骤中RNA必须完成特定任务,例如折叠。对该过程重要的RNA功能基团可通过对功能性和非功能性RNA分子进行物理分离,以及随后通过对易感硫代磷酸酯键进行碘裂解来定位两个RNA群体中修饰的核苷酸位置来确定。该方法已用于分析RNA生物化学的各个方面,包括RNA结构、催化作用和配体相互作用。在这里,我描述了如何建立用于研究RNA折叠的NAIM分析方法。该方案可轻松适用于研究任何RNA及其特性。完成实验所需的时间取决于RNA的长度和测试的原子修饰数量。一般来说,单个NAIM实验可在1-2周内完成,但要获得可靠且具有统计学意义的结果,预计需要数周的时间框架。