Pervasive, Coordinated Protein-Level Changes Driven by Transcript Isoform Switching during Meiosis

减数分裂过程中转录异构体转换驱动的普遍、协调的蛋白质水平变化

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作者:Ze Cheng, George Maxwell Otto, Emily Nicole Powers, Abdurrahman Keskin, Philipp Mertins, Steven Alfred Carr, Marko Jovanovic, Gloria Ann Brar

Abstract

To better understand the gene regulatory mechanisms that program developmental processes, we carried out simultaneous genome-wide measurements of mRNA, translation, and protein through meiotic differentiation in budding yeast. Surprisingly, we observed that the levels of several hundred mRNAs are anti-correlated with their corresponding protein products. We show that rather than arising from canonical forms of gene regulatory control, the regulation of at least 380 such cases, or over 8% of all measured genes, involves temporally regulated switching between production of a canonical, translatable transcript and a 5' extended isoform that is not efficiently translated into protein. By this pervasive mechanism for the modulation of protein levels through a natural developmental program, a single transcription factor can coordinately activate and repress protein synthesis for distinct sets of genes. The distinction is not based on whether or not an mRNA is induced but rather on the type of transcript produced.

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