Department of Cell Biology, Harvard Medical School, 240 Longwood Avenue, Boston, Massachusetts 02115, United States.
J Proteome Res. 2022 Jun 3;21(6):1525-1536. doi: 10.1021/acs.jproteome.2c00137. Epub 2022 May 11.
The yeast, , is a widely used model system for investigating conserved biological functions and pathways. Advancements in sample multiplexing have facilitated the study of the yeast proteome, yet many yeast proteins remain uncharacterized or only partially characterized. Yeast deletion strain collections are powerful resources for yeast proteome studies, uncovering the effects of gene function, genetic interactions, and cellular stresses. As complex biological systems cannot be understood by simply analyzing the individual components, a systems approach is often required in which a protein is represented as a component of large, interacting networks. Here, we evaluate the current state of yeast proteome analysis using isobaric tag-based sample multiplexing (TMTpro16) to profile the proteomes of 75 yeast deletion strains for which we measured the abundance of nearly 5000 proteins. Using statistical approaches, we highlighted covariance and regulation subnetworks and the enrichment of gene ontology classifications for covarying and coregulated proteins. This dataset presents a resource that is amenable to further data mining to study individual deletion strains, pathways, proteins, and/or interactions thereof while serving as a template for future network-based investigations using yeast deletion strain collections.
酵母是一种广泛用于研究保守生物学功能和途径的模式生物系统。样品多路复用技术的进步促进了酵母蛋白质组的研究,但仍有许多酵母蛋白尚未被描述或仅部分被描述。酵母缺失株系集是研究酵母蛋白质组的有力资源,可揭示基因功能、遗传相互作用和细胞应激的影响。由于复杂的生物系统不能通过简单地分析单个组件来理解,因此通常需要采用系统方法,其中蛋白质被表示为大型相互作用网络的组件。在这里,我们使用基于等重标记的样品多路复用(TMTpro16)来评估酵母蛋白质组分析的现状,对 75 株酵母缺失株系的蛋白质组进行了分析,我们测量了近 5000 种蛋白质的丰度。使用统计方法,我们突出了协方差和调控子网以及共变和共调控蛋白的基因本体分类的富集。该数据集提供了一个可进一步进行数据挖掘的资源,以研究单个缺失株系、途径、蛋白质和/或其相互作用,同时也为使用酵母缺失株系集进行基于网络的未来研究提供了模板。