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SHAPE Selection (SHAPES) enrich for RNA structure signal in SHAPE sequencing-based probing data

机译:SHAPE Selection(SHAPES)可在基于SHAPE测序的探测数据中丰富RNA结构信号

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Selective 2' Hydroxyl Acylation analyzed by Primer Extension (SHAPE) is an accurate method for probing of RNA secondary structure. In existing SHAPE methods, the SHAPE probing signal is normalized to a no-reagent control to correct for the background caused by premature termination of the reverse transcriptase. Here, we introduce a SHAPE Selection (SHAPES) reagent, N-propanone isatoic anhydride (NPIA), which retains the ability of SHAPE reagents to accurately probe RNA structure, but also allows covalent coupling between the SHAPES reagent and a biotin molecule. We demonstrate that SHAPES-based selection of cDNA-RNA hybrids on streptavidin beads effectively removes the large majority of background signal present in SHAPE probing data and that sequencing-based SHAPES data contain the same amount of RNA structure data as regular sequencing-based SHAPE data obtained through normalization to a no-reagent control. Moreover, the selection efficiently enriches for probed RNAs, suggesting that the SHAPES strategy will be useful for applications with high-background and low-probing signal such as in vivo RNA structure probing.
机译:通过引物延伸(SHAPE)分析的选择性2'羟基酰化是探测RNA二级结构的准确方法。在现有的SHAPE方法中,将SHAPE探测信号归一化为无试剂对照,以校正由逆转录酶的过早终止引起的背景。在这里,我们介绍一种SHAPE Selection(SHAPES)试剂,即N-丙酮等位酸酐(NPIA),它保留了SHAPE试剂准确探测RNA结构的能力,但也允许SHAPES试剂与生物素分子之间进行共价偶联。我们证明链霉亲和素珠上基于SHAPES的cDNA-RNA杂种选择有效去除了SHAPE探测数据中存在的大多数背景信号,并且基于测序的SHAPES数据包含与基于常规测序的SHAPE数据相同数量的RNA结构数据通过归一化为无试剂对照获得。此外,该选择有效地丰富了所探测的RNA,这表明SHAPES策略将可用于具有高背景和低探测信号的应用,例如体内RNA结构探测。

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