4.5 Article

Hog1 Targets Whi5 and Msa1 Transcription Factors To Downregulate Cyclin Expression upon Stress

期刊

MOLECULAR AND CELLULAR BIOLOGY
卷 35, 期 9, 页码 1606-1618

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/MCB.01279-14

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资金

  1. Spanish Ministry of Economy and Competitiveness [BFU2012-33503, BFU2011-26722]
  2. Fundacion Botin
  3. Banco Santander through its Santander Universities Global Division
  4. ICREA Academia award (Generalitat de Catalunya)
  5. Spanish Ministry of Economy and Competitiveness (FEDER)
  6. Generalitat de Catalunya [2014 SGR 599]

向作者/读者索取更多资源

Yeast cells have developed complex mechanisms to cope with extracellular insults. An increase in external osmolarity leads to activation of the stress-activated protein kinase Hog1, which is the main regulator of adaptive responses, such as gene expression and cell cycle progression, that are essential for cellular survival. Upon osmostress, the G(1)-to-S transition is regulated by Hog1 through stabilization of the cyclin-dependent kinase inhibitor Sic1 and the downregulation of G(1) cyclin expression by an unclear mechanism. Here, we show that Hog1 interacts with and phosphorylates components of the core cell cycle transcriptional machinery such as Whi5 and the coregulator Msa1. Phosphorylation of these two transcriptional regulators by Hog1 is essential for inhibition of G(1) cyclin expression, for control of cell morphogenesis, and for maximal cell survival upon stress. The control of both Whi5 and Msa1 by Hog1 also revealed the necessity for proper coordination of budding and DNA replication. Thus, Hog1 regulates G(1) cyclin transcription upon osmostress to ensure coherent passage through Start.

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