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Sequence-Specific Post-Synthetic Oligonucleotide Labeling for Single-Molecule Fluorescence Applications

机译:序列特异性的合成后寡核苷酸标记,用于单分子荧光应用

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摘要

The sequence-specific fluorescence labeling of nucleic acids is a prerequisite for various methods including single-molecule Forster resonance energy transfer (smFRET) for the detailed study of nucleic acid folding and function. Such nucleic acid derivatives are commonly obtained by solid-phase methods; however, yields decrease rapidly with increasing length and restrict the practicability of this approach for long strands. Here, we report a new labeling strategy for the postsynthetic incorporation of a bioorthogonal group into single stranded regions of both DNA and RNA of unrestricted length. A 12-alkyne-etheno-adenine modification is sequence selectively formed using DNA-templated synthesis, followed by conjugation of the fluorophore Cy3 via a copper-catalyzed azide-alkyne cycloaddition (CuAAC). Evaluation of the labeled strands in smFRET measurements shows that the strategy developed here has the potential to be used for the study of long functional nucleic acids by (single-molecule) fluorescence or other methods. To prove the universal use of the method, its application was successfully extended to the labeling of a short RNA single strand. As a proof-of-concept, also the labeling of a large RNA molecule in form of a 633 nucleotide long construct derived from the Saccharomyces cerevisiae group II intron Sc.ai5 gamma was performed, and covalent attachment of the Cy3 fluorophore was shown with gel electrophoresis.
机译:核酸的序列特异性荧光标记是各种方法的先决条件,包括用于详细研究核酸折叠和功能的单分子Forster共振能量转移(smFRET)。此类核酸衍生物通常通过固相方法获得;例如,然而,产量随着长度的增加而迅速下降,并限制了这种方法在长链上的实用性。在这里,我们报告了一种新的标记策略,用于将生物正交基团合成后掺入长度不受限制的DNA和RNA的单链区域。使用DNA模板合成选择性地形成12-炔烃-炔基腺嘌呤修饰序列,然后通过铜催化的叠氮化物-炔烃环加成反应(CuAAC)偶联荧光团Cy3。在smFRET测量中对标记链的评估表明,此处开发的策略有潜力用于通过(单分子)荧光或其他方法研究长功能核酸。为了证明该方法的普遍应用,其应用已成功扩展到短RNA单链的标记。作为概念验证,还对源自酿酒酵母II组内含子Sc.ai5γ的633个核苷酸长的构建体形式的大RNA分子进行了标记,并用凝胶显示了Cy3荧光团的共价连接电泳。

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