The HOG MAP kinase pathway is required for the induction of methylglyoxal-responsive genes and determines methylglyoxal resistance in Saccharomyces cerevisiae

被引:59
作者
Aguilera, J [1 ]
Rodríguez-Vargas, S [1 ]
Prieto, JA [1 ]
机构
[1] CSIC, Inst Agroquim & Tecnol Alimentos, Dept Biotechnol, E-46010 Valencia, Spain
关键词
D O I
10.1111/j.1365-2958.2005.04533.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A sudden overaccumulation of methylglyoxal (MG) induces, in Saccharomyces cerevisiae, the expression of MG-protective genes, including GPD1, GLO1 and GRE3. The response is partially dependent on the transcriptional factors Msn2p/Msn4p, but unrelated with the general stress response mechanism. Here, we show that the high-osmolarity glycerol (HOG)-pathway controls the genetic response to MG and determines the yeast growth capacity upon MG exposure. Strains lacking the MAPK Hog1p, the upstream component Ssk1p or the HOG-dependent nuclear factor Msn1p, showed a reduction in the mRNA accumulation of MG-responsive genes after MG addition. Moreover, hyperactivation of Hog1p by deletion of protein phosphatase PTP2 enhanced the response, while blocking the pathway by deletion of the MAPKK PBS2 had a negative effect. In addition, the activity of Hog1p affected the basal level of GPD1 mRNA under non-inducing conditions. These effects had a great influence on MG resistance, as hog1Delta and other HOG-pathway mutants with impaired MG-specific expression displayed MG sensitivity, whereas those with enhanced expression exhibited MG resistance as compared with the wild-type. However, MG does not trigger the overphosphorylation of Hog1p or its nuclear import in the parental strain. Moreover, dual phosphorylation of Hog1p appears to be dispensable in the triggering of the transcriptional response, although a phosphorylable form of Hog1p is fundamental for the transcriptional activity. Overall, our results suggest that the basal activity of the HOG-pathway serves to amplify the expression of MG-responsive genes under non-inducing and inducing conditions, ensuring cell protection against this toxic glycolytic by-product.
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页码:228 / 239
页数:12
相关论文
共 55 条
[1]   Yeast cells display a regulatory mechanism in response to methylglyoxal [J].
Aguilera, J ;
Prieto, JA .
FEMS YEAST RESEARCH, 2004, 4 (06) :633-641
[2]   The Saccharomyces cerevisiae aldose, reductase is implied in the metabolism of methylglyoxal in response to stress conditions [J].
Aguilera, J ;
Prieto, JA .
CURRENT GENETICS, 2001, 39 (5-6) :273-283
[3]   Glyoxal and methylglyoxal trigger distinct signals for map family kinases and caspase activation in human endothelial cells [J].
Akhand, AA ;
Hossain, K ;
Mitsui, H ;
Kato, M ;
Miyata, T ;
Inagi, R ;
Du, J ;
Takeda, K ;
Kawamoto, Y ;
Suzuki, H ;
Kurokawa, K ;
Nakashima, I .
FREE RADICAL BIOLOGY AND MEDICINE, 2001, 31 (01) :20-30
[4]   GPD1, WHICH ENCODES GLYCEROL-3-PHOSPHATE DEHYDROGENASE, IS ESSENTIAL FOR GROWTH UNDER OSMOTIC-STRESS IN SACCHAROMYCES-CEREVISIAE, AND ITS EXPRESSION IS REGULATED BY THE HIGH-OSMOLARITY GLYCEROL RESPONSE PATHWAY [J].
ALBERTYN, J ;
HOHMANN, S ;
THEVELEIN, JM ;
PRIOR, BA .
MOLECULAR AND CELLULAR BIOLOGY, 1994, 14 (06) :4135-4144
[5]   Osmostress-induced transcription by Hot1 depends on a Hog1-mediated recruitment of the RNA Pol II [J].
Alepuz, PM ;
de Nadal, E ;
Zapater, M ;
Ammerer, G ;
Posas, F .
EMBO JOURNAL, 2003, 22 (10) :2433-2442
[6]   Stress-induced MAP kinase Hog1 is part of transcription activation complexes [J].
Alepuz, PM ;
Jovanovic, A ;
Reiser, V ;
Ammerer, G .
MOLECULAR CELL, 2001, 7 (04) :767-777
[7]   Hyperosmotic stress response and regulation of cell wall integrity in Saccharomyces cerevisiae share common functional aspects [J].
Alonso-Monge, R ;
Real, E ;
Wojda, I ;
Bebelman, JP ;
Mager, WH ;
Siderius, M .
MOLECULAR MICROBIOLOGY, 2001, 41 (03) :717-730
[8]   Remodeling of yeast genome expression in response to environmental changes [J].
Causton, HC ;
Ren, B ;
Koh, SS ;
Harbison, CT ;
Kanin, E ;
Jennings, EG ;
Lee, TI ;
True, HL ;
Lander, ES ;
Young, RA .
MOLECULAR BIOLOGY OF THE CELL, 2001, 12 (02) :323-337
[9]   STE20-LIKE PROTEIN-KINASES ARE REQUIRED FOR NORMAL LOCALIZATION OF CELL-GROWTH AND FOR CYTOKINESIS IN BUDDING YEAST [J].
CVRCKOVA, F ;
DEVIRGILIO, C ;
MANSER, E ;
PRINGLE, JR ;
NASMYTH, K .
GENES & DEVELOPMENT, 1995, 9 (15) :1817-1830
[10]   The MAPK Hog1 recruits Rpd3 histone deacetylase to activate osmoresponsive genes [J].
de Nadal, E ;
Zapater, M ;
Alepuz, PM ;
Sumoy, L ;
Mas, G ;
Posas, F .
NATURE, 2004, 427 (6972) :370-374