Fiedler Dorothea, Braberg Hannes, Mehta Monika, Chechik Gal, Cagney Gerard, Mukherjee Paromita, Silva Andrea C, Shales Michael, Collins Sean R, van Wageningen Sake, Kemmeren Patrick, Holstege Frank C P, Weissman Jonathan S, Keogh Michael-Christopher, Koller Daphne, Shokat Kevan M, Krogan Nevan J
Department of Cellular and Molecular Pharmacology, University of California, San Francisco, 94158, USA.
Cell. 2009 Mar 6;136(5):952-63. doi: 10.1016/j.cell.2008.12.039.
Reversible protein phosphorylation is a signaling mechanism involved in all cellular processes. To create a systems view of the signaling apparatus in budding yeast, we generated an epistatic miniarray profile (E-MAP) comprised of 100,000 pairwise, quantitative genetic interactions, including virtually all protein and small-molecule kinases and phosphatases as well as key cellular regulators. Quantitative genetic interaction mapping reveals factors working in compensatory pathways (negative genetic interactions) or those operating in linear pathways (positive genetic interactions). We found an enrichment of positive genetic interactions between kinases, phosphatases, and their substrates. In addition, we assembled a higher-order map from sets of three genes that display strong interactions with one another: triplets enriched for functional connectivity. The resulting network view provides insights into signaling pathway regulation and reveals a link between the cell-cycle kinase, Cak1, the Fus3 MAP kinase, and a pathway that regulates chromatin integrity during transcription by RNA polymerase II.
可逆性蛋白质磷酸化是一种参与所有细胞过程的信号传导机制。为了构建出芽酵母信号传导装置的系统视图,我们生成了一个上位性微阵列图谱(E-MAP),它由100,000个成对的定量遗传相互作用组成,几乎包括了所有的蛋白质和小分子激酶、磷酸酶以及关键的细胞调节因子。定量遗传相互作用图谱揭示了在补偿途径中起作用的因子(负向遗传相互作用)或在线性途径中起作用的因子(正向遗传相互作用)。我们发现激酶、磷酸酶及其底物之间存在正向遗传相互作用的富集。此外,我们从彼此之间显示出强相互作用的三个基因集合中组装了一个高阶图谱:富含功能连接性的三联体。由此产生的网络视图为信号通路调节提供了见解,并揭示了细胞周期激酶Cak1、Fus3丝裂原活化蛋白激酶以及在RNA聚合酶II转录过程中调节染色质完整性的一条途径之间的联系。