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Population Proteomics: Quantitative Variation Within and Among Populations in Cardiac Protein Expression

机译:人口蛋白质组学:心脏蛋白表达的人群内和人群之间的定量变化。

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Population analysis of gene expression is typically achieved by quantifying levels of mRNA; however, gene expression is also a function of protein translation and turnover. Therefore, a complete understanding of population variation in gene expression requires quantitative knowledge of protein expression within and among natural populations. We used two-dimensional fluorescence difference gel electrophoresis (2D-DIGE) to quantitatively compare expression of heart ventricle proteins among 18 individuals in three populations of the teleost fish Fundulus. Among populations, expressions between orthologous proteins and mRNAs were generally positively correlated. Additionally, similar to the pattern of cardiac mRNA expression for the same populations, we found considerable variation in protein expression both within and among populations: Of 408 protein features in 2D gels, 34% are significantly different (P < 0.01) among individuals within a population, 9% differ between populations, and 12% have a pattern of expression that suggests they have evolved by natural selection. Although similar to mRNA expression, the frequency of significant differences among populations is larger for proteins. Similar to mRNA expressions, expressions of most proteins are correlated to the expressions of many other proteins. However, the correlations among proteins are more extensive than the correlation for similar RNAs. These correlations suggest a greater coordinate regulation of protein than mRNA expression. The larger frequency of significant differences among populations and the greater frequency of correlated expression among proteins versus among RNAs suggest that the molecular mechanisms affecting protein expression enhance the differences among populations, and these regulatory steps could be a source of variation for adaptation.
机译:基因表达的群体分析通常是通过定量mRNA的水平来完成的。然而,基因表达也是蛋白质翻译和更新的功能。因此,要全面了解基因表达中的种群变异,需要对自然种群内部和种群之间的蛋白质表达有定量的了解。我们使用二维荧光差异凝胶电泳(2D-DIGE)来定量比较硬骨鱼眼底三个种群中18个个体中心脏心室蛋白的表达。在人群中,直系同源蛋白和mRNA之间的表达通常呈正相关。此外,与相同人群的心脏mRNA表达模式相似,我们发现人群内部和人群之间的蛋白质表达都存在很大差异:在2D凝胶中408种蛋白质特征中,34%的个体之间存在显着差异(P <0.01)。人口之间有9%的差异,有12%的人口表达模式表明他们是通过自然选择而进化的。尽管与mRNA表达相似,但蛋白质之间群体间显着差异的频率更大。与mRNA表达相似,大多数蛋白质的表达与许多其他蛋白质的表达相关。但是,蛋白质之间的相关性比类似RNA的相关性更为广泛。这些相关性表明蛋白质的协调调控比mRNA表达更大。群体之间显着差异的频率越高,蛋白质之间相对于RNA之间的相关表达频率越高,表明影响蛋白质表达的分子机制会加剧群体之间的差异,而这些调控步骤可能是适应变化的来源。

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