Inserm U1085, IRSET, Proteomics Core Facility Biogenouest, Université de Rennes 1, F-35042 Rennes, France.
Mol Cell Proteomics. 2012 Feb;11(2):M111.012682. doi: 10.1074/mcp.M111.012682. Epub 2011 Oct 13.
The budding yeast Saccharomyces cerevisiae is a major model organism for important biological processes such as mitotic growth and meiotic development, it can be a human pathogen, and it is widely used in the food-, and biotechnology industries. Consequently, the genomes of numerous strains have been sequenced and a very large amount of RNA profiling data is available. Moreover, it has recently become possible to quantitatively analyze the entire yeast proteome; however, efficient and cost-effective high-throughput protein profiling remains a challenge. We report here a new approach to direct and label-free large-scale yeast protein identification using a tandem buffer system for protein extraction, two-step protein prefractionation and enzymatic digestion, and detection of peptides by iterative mass spectrometry. Our profiling study of diploid cells undergoing rapid mitotic growth identified 86% of the known proteins and its output was found to be widely concordant with genome-wide mRNA concentrations and DNA variations between yeast strains. This paves the way for comprehensive and straightforward yeast proteome profiling across a wide variety of experimental conditions.
budding 酵母酿酒酵母是有丝分裂生长和减数分裂等重要生物学过程的主要模式生物,它可以是人类病原体,并且广泛用于食品和生物技术行业。因此,许多菌株的基因组已被测序,并且有大量的 RNA 分析数据可用。此外,最近已经可以定量分析整个酵母蛋白质组; 然而,高效和具有成本效益的高通量蛋白质分析仍然是一个挑战。我们在这里报告了一种使用串联缓冲系统进行蛋白质提取、两步蛋白质预分级和酶消化以及通过迭代质谱检测肽的新方法,用于直接和无标记的大规模酵母蛋白质鉴定。我们对快速有丝分裂生长的二倍体细胞进行的分析研究鉴定了 86%的已知蛋白质,其输出结果与全基因组 mRNA 浓度和酵母菌株之间的 DNA 变异广泛一致。这为在广泛的实验条件下进行全面而直接的酵母蛋白质组分析铺平了道路。