Rossio Valentina, Liu Xinyue, Paulo Joao A
Department of Cell Biology, Harvard Medical School, Boston, MA 02115, USA.
Proteomes. 2023 Oct 9;11(4):30. doi: 10.3390/proteomes11040030.
The yeast is a powerful model system that is often used to expand our understanding of cellular processes and biological functions. Although many genetically well-characterized laboratory strains of are available, they may have different genetic backgrounds which can confound data interpretation. Here, we report a comparative whole-proteome analysis of two common laboratory yeast background strains, W303 and BY4742, in both exponential and stationary growth phases using isobaric-tag-based mass spectrometry to highlight differences in proteome complexity. We quantified over 4400 proteins, hundreds of which showed differences in abundance between strains and/or growth phases. Moreover, we used proteome-wide protein abundance to profile the mating type of the strains used in the experiment, the auxotrophic markers, and associated metabolic pathways, as well as to investigate differences in particular classes of proteins, such as the pleiotropic drug resistance (PDR) proteins. This study is a valuable resource that offers insight into mechanistic differences between two common yeast background strains and can be used as a guide to select a background that is best suited for addressing a particular biological question.
酵母是一种强大的模型系统,常被用于拓展我们对细胞过程和生物学功能的理解。尽管有许多遗传特征明确的实验室酵母菌株可供使用,但它们可能具有不同的遗传背景,这可能会混淆数据解读。在此,我们报告了使用基于等压标签的质谱分析法,对两种常见的实验室酵母背景菌株W303和BY4742在指数生长期和稳定期的全蛋白质组进行比较分析,以突出蛋白质组复杂性的差异。我们定量了超过4400种蛋白质,其中数百种在菌株之间和/或生长阶段显示出丰度差异。此外,我们利用全蛋白质组的蛋白质丰度来分析实验中所用菌株的交配型、营养缺陷型标记以及相关代谢途径,还研究了特定类别的蛋白质差异,如多药耐药(PDR)蛋白。这项研究是一项宝贵的资源,它有助于深入了解两种常见酵母背景菌株之间的机制差异,并可作为选择最适合解决特定生物学问题的背景菌株的指南。