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Click Modification of RNA at Adenosine: Structureand Reactivity of 7-Ethynyl- and 7-Triazolyl-8-aza-7-deazaadenosinein RNA

机译:单击在腺苷上的RNA修饰:结构乙炔基和7-三唑-8-氮杂-7-脱氮杂腺苷的合成与反应活性在RNA中

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摘要

Ribonucleoside analogues bearing terminal alkynes, including 7-ethynyl-8-aza-7-deazaadenosine (7-EAA), are useful for RNA modification applications. However, although alkyne- and triazole-bearing ribonucleosides are in widespread use, very little information is available on the impact of these modifications on RNA structure. By solving crystal structures for RNA duplexes containing these analogues, we show that, like adenosine, 7-EAA and a triazole derived from 7-EAA base pair with uridine and are well-accommodated within an A-form helix. We show that copper-catalyzed azide/alkyne cycloaddition (CuAAC) reactions with 7-EAA are sensitive to the RNA secondary structure context, with single-stranded sites reacting faster than duplex sites. 7-EAA and its triazole products are recognized in RNA template strands as adenosine by avian myoblastosis virus reverse transcriptase. In addition, 7-EAA in RNA is a substrate for an active site mutant of the RNA editing adenosine deaminase, ADAR2. These studies extend our understanding of the impact of these novel nucleobase analogues and set the stage for their use in probing RNA structure and metabolism.
机译:带有末端炔的核糖核苷类似物,包括7-乙炔基-8-氮杂-7-脱氮杂腺苷(7-EAA),可用于RNA修饰应用。然而,尽管带有炔和三唑的核糖核苷已被广泛使用,但是关于这些修饰对RNA结构的影响的信息很少。通过求解包含这些类似物的RNA双链体的晶体结构,我们显示出,像腺苷一样,7-EAA和7-EAA碱基对与尿苷衍生的三唑很好地容纳在A型螺旋中。我们显示与7-EAA的铜催化的叠氮化物/炔烃环加成(CuAAC)反应对RNA二级结构上下文敏感,单链位点比双链位点反应更快。禽成肌细胞病病毒逆转录酶将7-EAA及其三唑产物在RNA模板链中识别为腺苷。另外,RNA中的7-EAA是RNA编辑腺苷脱氨酶ADAR2的活性位点突变体的底物。这些研究扩展了我们对这些新型核碱基类似物的影响的理解,并为它们用于探测RNA结构和代谢奠定了基础。

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