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Proteome-wide quantitative multiplexed profiling of protein expression: carbon-source dependency in Saccharomyces cerevisiae

机译:蛋白表达的蛋白质组全定量多重分析:酿酒酵母中的碳源依赖性。

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摘要

The global proteomic alterations in the budding yeast Saccharomyces cerevisiae due to differences in carbon sources can be comprehensively examined using mass spectrometry–based multiplexing strategies. In this study, we investigate changes in the S. cerevisiae proteome resulting from cultures grown in minimal media using galactose, glucose, or raffinose as the carbon source. We used a tandem mass tag 9-plex strategy to determine alterations in relative protein abundance due to a particular carbon source, in triplicate, thereby permitting subsequent statistical analyses. We quantified more than 4700 proteins across all nine samples; 1003 proteins demonstrated statistically significant differences in abundance in at least one condition. The majority of altered proteins were classified as functioning in metabolic processes and as having cellular origins of plasma membrane and mitochondria. In contrast, proteins remaining relatively unchanged in abundance included those having nucleic acid–related processes, such as transcription and RNA processing. In addition, the comprehensiveness of the data set enabled the analysis of subsets of functionally related proteins, such as phosphatases, kinases, and transcription factors. As a resource, these data can be mined further in efforts to understand better the roles of carbon source fermentation in yeast metabolic pathways and the alterations observed therein, potentially for industrial applications, such as biofuel feedstock production.
机译:可以使用基于质谱的多路复用策略全面检查由于碳源差异导致的酿酒酵母酵母中的全球蛋白质组学变化。在这项研究中,我们调查了半乳糖,葡萄糖或棉子糖为碳源的培养基在基本培养基中生长引起的酿酒酵母蛋白质组的变化。我们使用了串联质量标签9重策略,一式三份地确定了由于特定碳源而引起的相对蛋白质丰度的变化,一式三份,从而可以进行后续的统计分析。我们对所有九个样本中的4700多种蛋白质进行了定量;在至少一种条件下,1003种蛋白质在丰度上显示出统计学上的显着差异。大多数改变的蛋白质被分类为在代谢过程中起作用,并且具有质膜和线粒体的细胞起源。相反,丰度保持相对不变的蛋白质包括那些具有核酸相关过程的蛋白质,例如转录和RNA加工。此外,数据集的全面性使得能够分析功能相关蛋白的子集,例如磷酸酶,激酶和转录因子。作为资源,可以进一步挖掘这些数据,以更好地理解碳源发酵在酵母代谢途径中的作用以及在其中观察到的改变,这有可能用于工业应用,例如生物燃料原料生产。

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