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ShapeFinder: A software system for high-throughput quantitative analysis of nucleic acid reactivity information resolved by capillary electrophoresis

机译:ShapeFinder:用于通过毛细管电泳解析的核酸反应性信息的高通量定量分析的软件系统

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摘要

Analysis of the long-range architecture of RNA is a challenging experimental and computational problem. Local nucleotide flexibility, which directly reports underlying base pairing and tertiary interactions in an RNA, can be comprehensively assessed at single nucleotide resolution using high-throughput selective 2′-hydroxyl acylation analyzed by primer extension (hSHAPE). hSHAPE resolves structure-sensitive chemical modification information by high-resolution capillary electrophoresis and typically yields quantitative nucleotide flexibility information for 300–650 nucleotides (nt) per experiment. The electropherograms generated in hSHAPE experiments provide a wealth of structural information; however, significant algorithmic analysis steps are required to generate quantitative and interpretable data. We have developed a set of software tools called ShapeFinder to make possible rapid analysis of raw sequencer data from hSHAPE, and most other classes of nucleic acid reactivity experiments. The algorithms in ShapeFinder (1) convert measured fluorescence intensity to quantitative cDNA fragment amounts, (2) correct for signal decay over read lengths extending to 600 nts or more, (3) align reactivity data to the known RNA sequence, and (4) quantify per nucleotide reactivities using whole-channel Gaussian integration. The algorithms and user interface tools implemented in ShapeFinder create new opportunities for tackling ambitious problems involving high-throughput analysis of structure–function relationships in large RNAs.
机译:RNA的远程体系结构的分析是一个具有挑战性的实验和计算问题。可以使用引物延伸(hSHAPE)分析的高通量选择性2'-羟基酰化作用,以单核苷酸分辨率全面评估直接报告RNA中潜在碱基配对和三级相互作用的局部核苷酸柔性。 hSHAPE通过高分辨率毛细管电泳解析结构敏感的化学修饰信息,通常每个实验可得到300-650个核苷酸(nt)的定量核苷酸柔性信息。 hSHAPE实验中产生的电泳图提供了大量的结构信息。但是,需要大量的算法分析步骤才能生成定量和可解释的数据。我们已经开发了一套称为ShapeFinder的软件工具,可以快速分析hSHAPE中的原始测序仪数据以及大多数其他类别的核酸反应性实验。 ShapeFinder中的算法(1)将测得的荧光强度转换为定量的cDNA片段数量;(2)在延伸至600 nts或更长的读取长度上校正信号衰减;(3)将反应性数据与已知的RNA序列进行比对;以及(4)使用全通道高斯积分量化每个核苷酸的反应性。 ShapeFinder中实现的算法和用户界面工具为解决涉及大型RNA中结构与功能关系的高通量分析的雄心勃勃的问题提供了新的机会。

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