Literature DB >> 15967597

Interaction between Rtg2p and Mks1p in the regulation of the RTG pathway of Saccharomyces cerevisiae.

José Ribamar Ferreira Júnior1, Mário Spírek, Zhengchang Liu, Ronald A Butow.   

Abstract

Retrograde signaling mediates nuclear gene expression in response to changes in the functional state of mitochondria. In budding yeast, retrograde signaling, also termed the RTG pathway, relies on the heterodimeric, basic helix-loop-helix zipper transcription factors, Rtg1p and Rtg3p, for the activation of target gene expression. Activation of the RTG pathway leads to partial dephosphorylation of Rtg3p and its translocation, together with Rtg1p, from the cytoplasm to the nucleus. These processes depend on a positive regulatory factor, Rtg2p, a novel protein with a ATP binding domain similar to that of the Hsp70/actin/sugar kinase superfamily. Four negative regulatory factors, Lst8p, Mks1p, and two redundant 14-3-3 proteins, Bmh1/2p, function between Rtg2p and Rtg1/3p. Alternative interaction between Mks1p and Rtg2p or Bmh1/2p provides a means for regulation of the RTG pathway. When the RTG pathway is on, Mks1p is inactivated by its association with Rtg2p; and when the RTG pathway is off, Mks1p dissociates from Rtg2p and forms a complex with Bmh1/2p, which is the negative regulatory form of Mks1p. Here we show that Rtg2p and Mks1p can interact in the absence of other factors, and is thereby the minimal binary switch for regulation of the RTG pathway. Gel filtration experiments indicate that both Rtg2p and Mks1p exist in high molecular weight complexes. In response to changes in the activity of the RTG pathway, both Rtg2p and Mks1p shift to different sized high molecular weight complexes. Together, our data suggest that dynamic association between Mks1p and Rtg2p in high molecular weight complexes provides a means to regulate the RTG pathway.

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Year:  2005        PMID: 15967597     DOI: 10.1016/j.gene.2005.03.048

Source DB:  PubMed          Journal:  Gene        ISSN: 0378-1119            Impact factor:   3.688


  10 in total

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2.  Multiple signals converge on a differentiation MAPK pathway.

Authors:  Colin A Chavel; Heather M Dionne; Barbara Birkaya; Jyoti Joshi; Paul J Cullen
Journal:  PLoS Genet       Date:  2010-03-19       Impact factor: 5.917

3.  Adenosine Triphosphate (ATP) Is a Candidate Signaling Molecule in the Mitochondria-to-Nucleus Retrograde Response Pathway.

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Journal:  Genes (Basel)       Date:  2013-03-20       Impact factor: 4.141

Review 4.  Mitochondrial stress signaling in longevity: a new role for mitochondrial function in aging.

Authors:  Shauna Hill; Holly Van Remmen
Journal:  Redox Biol       Date:  2014-07-27       Impact factor: 11.799

5.  Structural and functional mapping of Rtg2p determinants involved in retrograde signaling and aging of Saccharomyces cerevisiae.

Authors:  Rafaela Maria Rios-Anjos; Vittoria de Lima Camandona; Lucas Bleicher; Jose Ribamar Ferreira-Junior
Journal:  PLoS One       Date:  2017-05-04       Impact factor: 3.240

6.  Role of Mitochondrial Retrograde Pathway in Regulating Ethanol-Inducible Filamentous Growth in Yeast.

Authors:  Beatriz González; Albert Mas; Gemma Beltran; Paul J Cullen; María Jesús Torija
Journal:  Front Physiol       Date:  2017-03-29       Impact factor: 4.566

7.  Mitochondrial Retrograde Signaling Contributes to Metabolic Differentiation in Yeast Colonies.

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8.  The Hog1 SAPK controls the Rtg1/Rtg3 transcriptional complex activity by multiple regulatory mechanisms.

Authors:  Clàudia Ruiz-Roig; Núria Noriega; Alba Duch; Francesc Posas; Eulàlia de Nadal
Journal:  Mol Biol Cell       Date:  2012-09-05       Impact factor: 4.138

9.  Characterization of fungal RTG2 genes in retrograde signaling of Saccharomyces cerevisiae.

Authors:  Ercan Selçuk Ünlü; Lakshmi Narayanan; Donna M Gordon
Journal:  FEMS Yeast Res       Date:  2013-06-20       Impact factor: 2.796

10.  Divergent branches of mitochondrial signaling regulate specific genes and the viability of specialized cell types of differentiated yeast colonies.

Authors:  Kristýna Podholová; Vítězslav Plocek; Stanislava Rešetárová; Helena Kučerová; Otakar Hlaváček; Libuše Váchová; Zdena Palková
Journal:  Oncotarget       Date:  2016-03-29
  10 in total

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