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Translational control of lipogenic enzymes in the cell cycle of synchronous,growing yeast cells
Authors:Heidi M Blank  Ricardo Perez  Chong He  Nairita Maitra  Richard Metz  Joshua Hill  Yuhong Lin  Charles D Johnson  Vytas A Bankaitis  Brian K Kennedy  Rodolfo Aramayo  Michael Polymenis
Institution:1. Department of Biochemistry and Biophysics, Texas A&M University, College Station, TX, USA;2. Department of Biology, Texas A&M University, College Station, TX, USA;3. The Buck Institute for Research on Aging, Novato, CA, USA;4. Genomics and Bioinformatics Services, Texas A&M Agrilife Research, College Station, TX, USA;5. Department of Molecular & Cellular Medicine, Texas A&M Health Sciences Center, College Station, TX, USA;6. Department of Chemistry, Texas A&M University, College Station, TX, USA
Abstract:Translational control during cell division determines when cells start a new cell cycle, how fast they complete it, the number of successive divisions, and how cells coordinate proliferation with available nutrients. The translational efficiencies of mRNAs in cells progressing synchronously through the mitotic cell cycle, while preserving the coupling of cell division with cell growth, remain uninvestigated. We now report comprehensive ribosome profiling of a yeast cell size series from the time of cell birth, to identify mRNAs under periodic translational control. The data reveal coordinate translational activation of mRNAs encoding lipogenic enzymes late in the cell cycle including Acc1p, the rate‐limiting enzyme acetyl‐CoA carboxylase. An upstream open reading frame (uORF) confers the translational control of ACC1 and adjusts Acc1p protein levels in different nutrients. The ACC1 uORF is relevant for cell division because its ablation delays cell cycle progression, reduces cell size, and suppresses the replicative longevity of cells lacking the Sch9p protein kinase regulator of ribosome biogenesis. These findings establish an unexpected relationship between lipogenesis and protein synthesis in mitotic cell divisions.
Keywords:   ACC1     cell size  mitosis  translation  upstream open reading frame
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