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Determinants of Protein Abundance and Translation Efficiency in S. cerevisiae

机译:酿酒酵母中蛋白质丰度和翻译效率的决定因素

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摘要

The translation efficiency of most Saccharomyces cerevisiae genes remains fairly constant across poor and rich growth media. This observation has led us to revisit the available data and to examine the potential utility of a protein abundance predictor in reinterpreting existing mRNA expression data. Our predictor is based on large-scale data of mRNA levels, the tRNA adaptation index, and the evolutionary rate. It attains a correlation of 0.76 with experimentally determined protein abundance levels on unseen data and successfully cross-predicts protein abundance levels in another yeast species (Schizosaccharomyces pombe). The predicted abundance levels of proteins in known S. cerevisiae complexes, and of interacting proteins, are significantly more coherent than their corresponding mRNA expression levels. Analysis of gene expression measurement experiments using the predicted protein abundance levels yields new insights that are not readily discernable when clustering the corresponding mRNA expression levels. Comparing protein abundance levels across poor and rich media, we find a general trend for homeostatic regulation where transcription and translation change in a reciprocal manner. This phenomenon is more prominent near origins of replications. Our analysis shows that in parallel to the adaptation occurring at the tRNA level via the codon bias, proteins do undergo a complementary adaptation at the amino acid level to further increase their abundance.
机译:大多数酿酒酵母基因的翻译效率在贫穷和富裕的生长培养基之间保持相当稳定。该观察结果使我们重新审视了可用数据,并检验了蛋白质丰度预测因子在重新解释现有mRNA表达数据中的潜在效用。我们的预测因子基于mRNA水平,tRNA适应指数和进化速率的大规模数据。在看不见的数据上,它与实验确定的蛋白质丰度水平相关系数为0.76,可以成功地交叉预测另一种酵母(Schizosaccharomyces pombe)中的蛋白质丰度水平。已知酿酒酵母复合物中蛋白质和相互作用蛋白质的预测丰度水平比其相应的mRNA表达水平明显更连贯。使用预测的蛋白质丰度水平对基因表达测量实验进行分析,得出了一些新的见解,而这些见解在将相应的mRNA表达水平进行聚类分析时并不容易分辨。比较穷人和富人之间的蛋白质丰度水平,我们发现体内稳态调节的总体趋势是,转录和翻译以相反的方式变化。这种现象在复制起点附近更为突出。我们的分析表明,与通过密码子偏向在tRNA水平上发生的适应性并行,蛋白质确实在氨基酸水平上经历了互补性适应,以进一步增加其丰度。

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