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Characterization of global yeast quantitative proteome data generated from the wild-type and glucose repression Saccharomyces cerevisiae strains: The comparison of two quantitative methods

机译:从野生型和葡萄糖抑制酿酒酵母菌株产生的全球酵母定量蛋白质组数据的表征:两种定量方法的比较

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The quantitative proteomic analysis of complex protein mixtures is emerging as a technically challenging but viable systems-level approach for studying cellular function. This study presents a large-scale comparative analysis of protein abundances from yeast protein lysates derived from both wild-type yeast and yeast strains lacking key components of the Snf1 kinase complex. Four different strains were grown under well-controlled chemostat conditions. Multidimensional protein identification technology followed by quantitation using either spectral counting or stable isotope labeling approaches was used to identify relative changes in the protein expression levels between the strains. A total of 2388 proteins were relatively quantified, and more than 350 proteins were found to have significantly different expression levels between the two strains of comparison when using the stable isotope labeling strategy. The stable isotope labeling based quantitative approach was found to be highly reproducible among biological replicates when complex protein mixtures containing small expression changes were analyzed. Where poor correlation between stable isotope labeling and spectral counting was found, the major reason behind the discrepancy was the lack of reproducible sampling for proteins with low spectral counts. The functional categorization of the relative protein expression differences that occur in Snf1-deficient strains uncovers a wide range of biological processes regulated by this important. cellular kinase.
机译:复杂蛋白质混合物的定量蛋白质组学分析正在成为研究细胞功能的具有技术挑战性但可行的系统级方法。这项研究提出了来自野生型酵母和缺乏Snf1激酶复合物关键成分的酵母菌株的酵母蛋白质裂解物中蛋白质丰度的大规模比较分析。在良好控制的化学恒温条件下生长了四种不同的菌株。使用多维蛋白质鉴定技术,然后使用光谱计数或稳定同位素标记方法进行定量,以鉴定菌株之间蛋白质表达水平的相对变化。相对定量的共有2388种蛋白质,使用稳定同位素标记策略时,发现两种比较菌株之间有350种以上的蛋白质表达水平显着不同。当分析包含微小表达变化的复杂蛋白质混合物时,发现基于稳定同位素标记的定量方法在生物复制品中可高度重现。在发现稳定同位素标记与光谱计数之间的相关性较差的地方,差异背后的主要原因是缺乏光谱计数低的蛋白质的可重复采样。 Snf1缺陷菌株中发生的相对蛋白质表达差异的功能分类揭示了受此重要调控的广泛生物学过程。细胞激酶。

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