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Reversible site-specific tagging of enzymatically synthesized RNAs using aldehyde–hydrazine chemistry and protease-cleavable linkers

机译:使用醛肼化学和蛋白酶可切割的接头对酶促合成的RNA进行可逆的位点特异性标记

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摘要

The investigation of RNA structure, dynamics and biological function often requires the site-specific incorporation of non-natural moieties. Here we describe the functionalization of RNA transcripts by aldehyde–hydrazine chemistry using a simple initiator nucleotide that carries an acetal-protected aldehyde function. This initiator nucleotide was efficiently incorporated into RNA, and the modified RNAs were quantitatively coupled to a peptide derivative displaying a hydrazine moiety at one end, a biotin tag at the other, and a trypsin-cleavable sequence in between. RNA conjugates could be easily isolated by affinity chromatography on streptavidin agarose and quantitatively cleaved off the support by trypsin treatment without detectable RNA degradation. The strategy described here may allow the incorporation of various new features into enzymatically synthesized RNA under mild conditions.
机译:RNA结构,动力学和生物学功能的研究通常要求非天然部分的位点特异性结合。在这里,我们描述了醛-肼化学使用带有乙缩醛保护的醛功能的简单引发剂核苷酸对RNA转录物的功能化。该引发剂核苷酸被有效地掺入RNA,并且修饰的RNA定量偶联至肽衍生物,该肽衍生物在一端显示肼部分,在另一端显示生物素标签,并且在其之间显示胰蛋白酶可切割的序列。 RNA偶联物可通过亲和层析在链霉亲和素琼脂糖上轻松分离,并通过胰蛋白酶处理定量地从支持物上裂解下来,而没有可检测到的RNA降解。此处描述的策略可能允许在温和条件下将各种新功能整合到酶促合成的RNA中。

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