Literature DB >> 15053871

Yeast adapt to near-freezing temperatures by STRE/Msn2,4-dependent induction of trehalose synthesis and certain molecular chaperones.

Olga Kandror1, Nancy Bretschneider, Evgeniy Kreydin, Duccio Cavalieri, Alfred L Goldberg.   

Abstract

Virtually nothing is known about the biochemical adaptations in eukaryotic cells that may enhance survival at low temperatures or upon freezing. Here we demonstrate an adaptive response in yeast that is activated below 10 degrees C and increases tolerance to low temperatures and freezing. This response involves a dramatic accumulation of the chemical chaperone trehalose and induction of trehalose-synthesizing enzymes (Tps1, Tps2) and certain heat shock proteins (Hsp104, Hsp42, Hsp12, Ssa4). mRNAs for these proteins increase dramatically below 10 degrees C and even at 0 degrees C. Their expression requires Msn2,4 transcription factors but also involves marked mRNA stabilization. Upon return to 30 degrees C, TPS1, TPS2, and HSP104 mRNAs, trehalose levels and tolerance to freezing fall dramatically within minutes. Mutants lacking trehalose or Msn2,4 die more rapidly at 0 degrees C and upon freezing. Thus, below 10 degrees C, yeast show an adaptive response that sustains viability at low or freezing temperatures, which are commonly encountered in natural environments and laboratory refrigerators.

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Year:  2004        PMID: 15053871     DOI: 10.1016/s1097-2765(04)00148-0

Source DB:  PubMed          Journal:  Mol Cell        ISSN: 1097-2765            Impact factor:   17.970


  68 in total

1.  Regulation of expression of trehalose-6-phosphate synthase during cold shock in Arthrobacter strain A3.

Authors:  Xi-Ming Chen; Ying Jiang; Yuan-Ting Li; Hai-Hong Zhang; Jie Li; Xing Chen; Qi Zhao; Jing Zhao; Jing Si; Zhi-Wei Lin; Hua Zhang; Paul Dyson; Li-Zhe An
Journal:  Extremophiles       Date:  2011-06-01       Impact factor: 2.395

Review 2.  Staying alive: metabolic adaptations to quiescence.

Authors:  James R Valcourt; Johanna M S Lemons; Erin M Haley; Mina Kojima; Olukunle O Demuren; Hilary A Coller
Journal:  Cell Cycle       Date:  2012-05-01       Impact factor: 4.534

3.  Dynamic transcriptional and metabolic responses in yeast adapting to temperature stress.

Authors:  Katrin Strassburg; Dirk Walther; Hiroki Takahashi; Shigehiko Kanaya; Joachim Kopka
Journal:  OMICS       Date:  2010-06

4.  Temperature differentially affects adenosine triphosphatase activity in Hsc70 orthologs from Antarctic and New Zealand notothenioid fishes.

Authors:  Sean P Place; Gretchen E Hofmann
Journal:  Cell Stress Chaperones       Date:  2005       Impact factor: 3.667

Review 5.  Chaperone effects on prion and nonprion aggregates.

Authors:  Eugene G Rikhvanov; Nina V Romanova; Yury O Chernoff
Journal:  Prion       Date:  2007-10-06       Impact factor: 3.931

6.  Yeast Tolerance to Various Stresses Relies on the Trehalose-6P Synthase (Tps1) Protein, Not on Trehalose.

Authors:  Marjorie Petitjean; Marie-Ange Teste; Jean M François; Jean-Luc Parrou
Journal:  J Biol Chem       Date:  2015-05-01       Impact factor: 5.157

7.  Cold adaptation in budding yeast.

Authors:  Babette Schade; Gregor Jansen; Malcolm Whiteway; Karl D Entian; David Y Thomas
Journal:  Mol Biol Cell       Date:  2004-10-13       Impact factor: 4.138

8.  Fluidization of membrane lipids enhances the tolerance of Saccharomyces cerevisiae to freezing and salt stress.

Authors:  Sonia Rodríguez-Vargas; Alicia Sánchez-García; Jose Manuel Martínez-Rivas; Jose Antonio Prieto; Francisca Randez-Gil
Journal:  Appl Environ Microbiol       Date:  2006-10-27       Impact factor: 4.792

9.  Isolation of Blastomyces dermatitidis yeast from lung tissue during murine infection for in vivo transcriptional profiling.

Authors:  Amber J Marty; Marcel Wüthrich; John C Carmen; Thomas D Sullivan; Bruce S Klein; Christina A Cuomo; Gregory M Gauthier
Journal:  Fungal Genet Biol       Date:  2013-03-14       Impact factor: 3.495

Review 10.  Hsp104 and prion propagation.

Authors:  Nina V Romanova; Yury O Chernoff
Journal:  Protein Pept Lett       Date:  2009       Impact factor: 1.890

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