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Garcia R, et al.  (2009) The High Osmotic Response and Cell Wall Integrity Pathways Cooperate to Regulate Transcriptional Responses to Zymolyase-induced Cell Wall Stress in Saccharomyces cerevisiae. J Biol Chem 284(16):10901-11

Abstract: The adaptation of Saccharomyces cerevisiae to situations in which cell wall integrity is seriously compromised mainly involves the cell wall integrity pathway (CWI). However, in a recent work (1) we have demonstrated the co-participation of the HOG pathway to ensure yeast survival to cell wall stress mediated by zymolyase, which hydrolyses the ss-1,3 glucan network. Here we have characterized the role of both pathways in the regulation of the overall yeast transcriptional responses to zymolyase treatment using whole-genome expression profiling. A main group of yeast genes is dependent on both MAPKs, Slt2 and Hog1, for their induction. The transcriptional activation of these genes depends on the MAPKKK Bck1, the transcription factor Rlm1 and elements of the sho1 branch of the HOG pathway, but not on the sensors of the CWI pathway. A second group of genes is dependent on Slt2 but not Hog1 or Pbs2. However, the induction of these genes is dependent on upstream elements of the HOG pathway such as Sho1, Ste50 and Ste11, in accordance with a sequential activation of the HOG and CWI pathways. Zymolyase also promotes an osmotic-like transcriptional response with the activation of a group of genes dependent on elements of the Sho1 branch of HOG pathway but not on Slt2, being the induction of many of them dependent on Msn2/4. Additionally, in the absence of Hog1, zymolyase induces an alternative response related to mating and filamentation as a consequence of the crosstalk between these pathways and the HOG pathway. Finally, in the absence of Slt2 zymolyase increases the induction of genes associated with osmotic adaptation with respect to the wild-type, suggesting an inhibitory effect of the CWI pathway over the HOG pathway. These studies clearly reveal the complexity of the signal transduction machinery responsible for regulating yeast adaptation responses to cell wall stress.

Status: Published Type: Journal Article PubMed ID: 19234305

Topics addressed in this paper

Number of different genes curated to this paper: 87

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Topics Topics not linked to Genes Genes linked to topics (#1 - 10 )
AFR1 ALD3 ALD4 ARI1 BCK1 BGL2 CCW14 CIS3 CRG1 CRH1
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Topics Genes linked to topics (#11 - 20 )
CTT1 CWP1 CWP2 DCS2 DDR2 DDR48 DFG5 DIA1 EXG1 FBP26
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Topics Genes linked to topics (#21 - 30 )
FMP33 FMP48 FRE6 GFA1 GPD1 GRE2 HAL1 HOG1 HOR2 HOR7
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Topics Genes linked to topics (#31 - 40 )
HSP12 HSP150 HXT1 KDX1 MLP1 MSB4 MSC1 MSN2 MSN4 NQM1
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Topics Genes linked to topics (#41 - 50 )
OCH1 PBS2 PGM2 PIR1 PIR3 PNS1 PPR1 PRB1 PRM10 PRM5
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Topics Genes linked to topics (#51 - 60 )
PRY1 PRY2 PST1 PTP2 PUN1 RIM21 RLM1 RTC3 SED1 SHO1
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RNA Levels and Processing blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
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Topics Genes linked to topics (#61 - 70 )
SLT2 SMF1 SOL4 STE11 STE50 TMA10 TSL1 YCL049C YDL023C YGR149W
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Topics Genes linked to topics (#71 - 80 )
YHR033W YHR097C YIL108W YJL107C YJL171C YLR040C YLR042C YLR194C YML131W YMR090W
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Topics Genes linked to topics (#81 - 87 )
YMR103C YMR315W YNL058C YNL208W YPL088W YPS3 YPS6
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Regulation of blue ball blue ball blue ball blue ball blue ball blue ball blue ball
RNA Levels and Processing blue ball blue ball blue ball blue ball blue ball blue ball blue ball
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