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Comparison of approaches for rational siRNA design leading to a new efficient and transparent method

机译:合理siRNA设计方法的比较导致了一种新的高效透明方法

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摘要

Current literature describes several methods for the design of efficient siRNAs with 19 perfectly matched base pairs and 2 nt overhangs. Using four independent databases totaling 3336 experimentally verified siRNAs, we compared how well several of these methods predict siRNA cleavage efficiency. According to receiver operating characteristics (ROC) and correlation analyses, the best programs were BioPredsi, ThermoComposition and DSIR. We also studied individual parameters that significantly and consistently correlated with siRNA efficacy in different databases. As a result of this work we developed a new method which utilizes linear regression fitting with local duplex stability, nucleotide position-dependent preferences and total G/C content of siRNA duplexes as input parameters. The new method's discrimination ability of efficient and inefficient siRNAs is comparable with that of the best methods identified, but its parameters are more obviously related to the mechanisms of siRNA action in comparison with BioPredsi. This permits insight to the underlying physical features and relative importance of the parameters. The new method of predicting siRNA efficiency is faster than that of ThermoComposition because it does not employ time-consuming RNA secondary structure calculations and has much less parameters than DSIR. It is available as a web tool called ‘siRNA scales’.
机译:当前文献描述了几种设计具有19个完全匹配的碱基对和2个核苷酸突出端的有效siRNA的方法。使用总共3336个经过实验验证的siRNA的四个独立数据库,我们比较了其中几种方法预测siRNA切割效率的程度。根据接收器工作特性(ROC)和相关分析,最佳程序是BioPredsi,ThermoComposition和DSIR。我们还研究了在不同数据库中与siRNA效力显​​着且一致相关的单个参数。这项工作的结果是,我们开发了一种新方法,该方法利用线性回归拟合以及局部双链体稳定性,核苷酸位置依赖性偏好和siRNA双链体的总G / C含量作为输入参数。该新方法对有效和无效的siRNA的辨别能力可与确定的最佳方法相媲美,但与BioPredsi相比,其参数与siRNA作用机理更为明显。这样可以洞悉潜在的物理特征和参数的相对重要性。预测siRNA效率的新方法比ThermoComposition更快,因为它不使用费时的RNA二级结构计算,并且参数比DSIR小得多。它可以通过称为“ siRNA秤”的网络工具获得。

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