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Nondenaturing Purification of Co-Transcriptionally Folded RNA Avoids Common Folding Heterogeneity

机译:共变性折叠RNA的非变性纯化避免了常见的折叠异质性

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摘要

Due to the energetic frustration of RNA folding, tertiary structured RNA is typically characterized by a rugged folding free energy landscape where deep kinetic barriers separate numerous misfolded states from one or more native states. While most in vitro studies of RNA rely on (re)folding chemically and/or enzymatically synthesized RNA in its entirety, which frequently leads into kinetic traps, nature reduces the complexity of the RNA folding problem by segmental, co-transcriptional folding starting from the 5′ end. We here have developed a simplified, general, nondenaturing purification protocol for RNA to ask whether avoiding denaturation of a co-transcriptionally folded RNA can reduce commonly observed in vitro folding heterogeneity. Our protocol bypasses the need for large-scale auxiliary protein purification and expensive chromatographic equipment and involves rapid affinity capture with magnetic beads and removal of chemical heterogeneity by cleavage of the target RNA from the beads using the ligand-induced glmS ribozyme. For two disparate model systems, the Varkud satellite (VS) and hepatitis delta virus (HDV) ribozymes, we achieve >95% conformational purity within one hour of enzymatic transcription, without the need for any folding chaperones. We further demonstrate that in vitro refolding introduces severe conformational heterogeneity into the natively-purified VS ribozyme but not into the compact, double-nested pseudoknot fold of the HDV ribozyme. We conclude that conformational heterogeneity in complex RNAs can be avoided by co-transcriptional folding followed by nondenaturing purification, providing rapid access to chemically and conformationally pure RNA for biologically relevant biochemical and biophysical studies.
机译:由于RNA折叠的能量受阻,三级结构化RNA通常以崎folding的折叠自由能景观为特征,其中深层动力学屏障将许多错误折叠的状态与一个或多个天然状态分开。尽管大多数RNA的体外研究都依赖于化学和/或酶促合成的RNA的整体(重新)折叠,这通常会导致动力学陷阱,但自然界通过从RNA片段开始的分段,共转录折叠来降低RNA折叠问题的复杂性。 5′端。我们在这里为RNA开发了一种简化的,通用的,非变性的纯化方案,以询问避免避免共转录折叠的RNA变性是否可以减少通常在体外观察到的折叠异质性。我们的方案绕开了大规模辅助蛋白质纯化和昂贵的色谱设备的需求,涉及使用磁珠快速捕获亲和力并通过使用配体诱导的glmS核酶从珠上切割靶RNA来去除化学异质性。对于两个不同的模型系统,Varkud卫星(VS)和肝炎三角洲病毒(HDV)核酶,我们在酶促转录的一小时内即可达到> 95%的构象纯度,而无需任何折叠伴侣。我们进一步证明了体外重折叠将严重的构象异质性引入了天然纯化的VS核酶,但没有引入到HDV核酶的紧凑,双重嵌套的假结折叠中。我们得出的结论是,可以通过共转录折叠然后进行非变性纯化来避免复杂RNA中的构象异质性,从而为生物学相关的生化和生物物理研究提供快速获得化学和构象纯RNA的途径。

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