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Enzymatic production of single-molecule FISH and RNA capture probes

机译:酶促生产单分子FISH和RNA捕获探针

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摘要

Arrays of singly labeled short oligonucleotides that hybridize to a specific target revolutionized RNA biology, enabling quantitative, single-molecule microscopy analysis and high-efficiency RNA/RNP capture. Here, we describe a simple and efficient method that allows flexible functionalization of inexpensive DNA oligonucleotides by different fluorescent dyes or biotin using terminal deoxynucleotidyl transferase and custom-made functional group conjugated dideoxy-UTP. We show that (i) all steps of the oligonucleotide labeling—including conjugation, enzymatic synthesis, and product purification—can be performed in a standard biology laboratory, (ii) the process yields >90%, often >95% labeled product with minimal carryover of impurities, and (iii) the oligonucleotides can be labeled with different dyes or biotin, allowing single-molecule FISH, RNA affinity purification, and Northern blot analysis to be performed.
机译:与特定目标杂交的单标记短寡核苷酸阵列彻底改变了RNA生物学,实现了定量,单分子显微镜分析和高效RNA / RNP捕获。在这里,我们描述了一种简单有效的方法,该方法允许使用末端脱氧核苷酸转移酶和定制的官能团偶联的双脱氧-UTP,通过不同的荧光染料或生物素灵活地将廉价的DNA寡核苷酸功能化。我们显示(i)寡核苷酸标记的所有步骤-包括结合,酶促合成和产物纯化-均可在标准生物学实验室中进行,(ii)该过程的收率> 90%,通常> 95% (iii)可以用不同的染料或生物素标记寡核苷酸,从而可以进行单分子FISH,RNA亲和纯化和Northern blot分析。

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