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Identification of stress responsive genes by studying specific relationships between mRNA and protein abundance

机译:通过研究mRNA与蛋白质丰度之间的特定关系来识别应激反应基因

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摘要

Protein expression is regulated by the production and degradation of mRNAs and proteins but the specifics of their relationship are controversial. Although technological advances have enabled genome-wide and time-series surveys of mRNA and protein abundance, recent studies have shown paradoxical results, with most statistical analyses being limited to linear correlation, or analysis of variance applied separately to mRNA and protein datasets. Here, using recently analyzed genome-wide time-series data, we have developed a statistical analysis framework for identifying which types of genes or biological gene groups have significant correlation between mRNA and protein abundance after accounting for potential time delays. Our framework stratifies all genes in terms of the extent of time delay, conducts gene clustering in each stratum, and performs a non-parametric statistical test of the correlation between mRNA and protein abundance in a gene cluster. Consequently, we revealed stronger correlations than previously reported between mRNA and protein abundance in two metabolic pathways. Moreover, we identified a pair of stress responsive genes (ADC17 and KIN1) that showed a highly similar time series of mRNA and protein abundance. Furthermore, we confirmed robustness of the analysis framework by applying it to another genome-wide time-series data and identifying a cytoskeleton-related gene cluster (keratin 18, keratin 17, and mitotic spindle positioning) that shows similar correlation. The significant correlation and highly similar changes of mRNA and protein abundance suggests a concerted role of these genes in cellular stress response, which we consider provides an answer to the question of the specific relationships between mRNA and protein in a cell. In addition, our framework for studying the relationship between mRNAs and proteins in a cell will provide a basis for studying specific relationships between mRNA and protein abundance after accounting for potential time delays.
机译:蛋白质的表达受mRNA和蛋白质的产生和降解的调控,但它们之间的关系细节尚存争议。尽管技术上的进步使对mRNA和蛋白质丰度的全基因组和时间序列调查成为可能,但最近的研究显示出自相矛盾的结果,大多数统计分析仅限于线性相关,或分别应用于mRNA和蛋白质数据集的方差分析。在这里,我们使用最近分析的全基因组时间序列数据,建立了一个统计分析框架,用于在考虑潜在的时延之后识别出哪些类型的基因或生物基因组在mRNA和蛋白质丰度之间具有显着相关性。我们的框架根据时间延迟的程度对所有基因进行分层,在每个层次中进行基因聚类,并对基因簇中mRNA和蛋白质丰度之间的相关性进行非参数统计检验。因此,我们揭示了两个代谢途径中mRNA和蛋白质丰度之间的相关性比以前报道的要强。此外,我们鉴定了一对应激反应基因(ADC17和KIN1),它们显示出高度相似的mRNA和蛋白质丰度时间序列。此外,我们通过将分析框架应用于另一个全基因组时间序列数据并确定显示出相似相关性的细胞骨架相关基因簇(角蛋白18,角蛋白17和有丝分裂纺锤体定位)来确认分析框架的鲁棒性。 mRNA和蛋白质丰度的显着相关性和高度相似的变化表明,这些基因在细胞应激反应中起着协调的作用,我们认为这为细胞中mRNA和蛋白质之间的特定关系问题提供了答案。此外,我们的研究细胞中mRNA与蛋白质之间关系的框架将为研究潜在的时延后研究mRNA与蛋白质丰度之间的特定关系提供基础。

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