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anota: analysis of differential translation in genome-wide studies

机译:anota:全基因组研究中差异翻译的分析

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Translational control of gene expression has emerged as a major mechanism that regulates many biological processes and shows dysregulation in human diseases including cancer. When studying differential translation, levels of both actively translating mRNAs and total cytosolic mRNAs are obtained where the latter is used to correct for a possible contribution of differential cytosolic mRNA levels to the observed differential levels of actively translated mRNAs. We have recently shown that analysis of partial variance (APV) corrects for cytosolic mRNA levels more effectively than the commonly applied log ratio approach. APV provides a high degree of specificity and sensitivity for detecting biologically meaningful translation changes, especially when combined with a variance shrinkage method for estimating random error. Here we describe the anota (analysis of translational activity) R-package which implements APV, allows scrutiny of associated statistical assumptions and provides biologically motivated filters for analysis of genome wide datasets. Although the package was developed for analysis of differential translation in polysome microarray or ribosome-profiling datasets, any high-dimensional data that result in paired controls, such as RNP immunoprecipitation-microarray (RIP-CHIP) datasets, can be successfully analyzed with anota.
机译:基因表达的翻译控制已成为调节许多生物过程并显示人类疾病(包括癌症)失调的主要机制。当研究差异翻译时,会获得主动翻译的mRNA和总胞质mRNA的水平,其中后者用于校正差异的胞质mRNA水平对观察到的主动翻译的mRNA差异水平的可能贡献。我们最近显示,与常用的对数比方法相比,对部分方差(APV)的分析可以更有效地校正胞质mRNA水平。 APV为检测生物学上有意义的翻译变化提供了高度的特异性和敏感性,特别是与方差收缩法结合以估计随机错误时,尤其如此。在这里,我们描述了实现APV的anota(翻译活动分析)R-package,它允许审查相关的统计假设,并提供用于分析基因组范围内数据集的具有生物学动机的过滤器。尽管该软件包是为分析多核糖体微阵列或核糖体谱数据集中的差异翻译而开发的,但是可以使用anota成功分析导致配对对照的任何高维数据,例如RNP免疫沉淀微阵列(RIP-CHIP)数据集。

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