Regulation of mitochondrial thioredoxin peroxidase I expression by two different pathways: One dependent on cAMP and the other on heme

被引:20
作者
Monteiro, G
Pereira, GAG
Netto, LES
机构
[1] Univ Sao Paulo, Inst Biociencias, Dept Biol, BR-05508900 Sao Paulo, Brazil
[2] UNICAMP, Inst Biol, Dept Genet & Evolucao, Campinas, SP, Brazil
基金
巴西圣保罗研究基金会;
关键词
mitochondrial thioredoxin peroxidase; expression regulation; transcription activation; Msn2p and Msn4p activators; cAMP and glucose repression; HAP1p activator; heme; free radicals;
D O I
10.1016/S0891-5849(01)00801-2
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
Mitochondrial isoform of thioredoxin peroxidase (mTPx I) is an antioxidant protein recently described in Saccharomyces cerevisiae. Here we characterized pathways that lead to mTPx I induction in two situations: growth in media containing low glucose concentrations and treatment with peroxides. The induction of mTPx I by growth on low glucose concentrations was dependent on cAMP and on the transcription factors Msn2p/Msn4p as demonstrated by northern blot experiments using yeast strains with deletion of MSN2 and MSN4 genes and also using a strain permeable to cAMP. mTPx I expression was also induced by peroxides in a time- and dose-dependent manner and varied with the carbon source present in the media. Deletion of HAP1 or inhibition of heme synthesis abolished induction of mTPx I by H2O2 on cells which were grown in media containing glucose, indicating that Hap1p is involved in the regulation of this process. mTPx I was induced by H2O2 on glycerol/ethanol-containing media, but we could not associate any transcription factor with this phenomenon. Finally, mTPx I also induced by t-butyl hydroperoxide in a Hap1p-independent manner. In conclusion, mTPx I expression is under a complex regulatory network, which involves, at least, two signaling pathways: one sensing the carbon source (which is signalized by cAMP) and the other sensing the intracellular redox state (which is signalized by heme). (C) 2002 Elsevier Science Inc.
引用
收藏
页码:278 / 288
页数:11
相关论文
共 46 条
[31]   Mitochondria of Saccharomyces cerevisiae contain one-conserved cysteine type peroxiredoxin with thioredoxin peroxidase activity [J].
Pedrajas, JR ;
Miranda-Vizuete, A ;
Javanmardy, N ;
Gustafsson, JÅ ;
Spyrou, G .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (21) :16296-16301
[32]   Identification and functional characterization of a novel mitochondrial thioredoxin system in Saccharomyces cerevisiae [J].
Pedrajas, JR ;
Kosmidou, E ;
Miranda-Vizuete, A ;
Gustafsson, JÅ ;
Wright, APH ;
Spyrou, G .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (10) :6366-6373
[33]   Conserved regulation of the Hansenula polymorpha MOX promoter in Saccharomyces cerevisiae reveals insights in the transcriptional activation by Adr1p [J].
Pereira, GG ;
Hollenberg, CP .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1996, 238 (01) :181-191
[34]   Identification of a 28 kDa secretory protein from rat olfactory epithelium as a thiol-specific antioxidant. [J].
Peshenko, IV ;
Novoselov, VI ;
Evdokimov, VA ;
Nikolaev, YV ;
Kamzalov, SS ;
Shuvaeva, TM ;
Lipkin, VM ;
Fesenko, EE .
FREE RADICAL BIOLOGY AND MEDICINE, 1998, 25 (06) :654-659
[35]   FUNCTIONAL DISSECTION AND SEQUENCE OF YEAST HAP1 ACTIVATOR [J].
PFEIFER, K ;
KIM, KS ;
KOGAN, S ;
GUARENTE, L .
CELL, 1989, 56 (02) :291-301
[36]   Heme regulates SOD2 transcription by activation and repression in Saccharomyces cerevisiae [J].
Pinkham, JL ;
Wang, ZD ;
Alsina, J .
CURRENT GENETICS, 1997, 31 (04) :281-291
[37]   The transcriptional response of Saccharomyces cerevisiae to osmotic shock -: Hot1p and Msn2p/Msn4p are required for the induction of subsets of high osmolarity glycerol pathway-dependent genes [J].
Rep, M ;
Krantz, M ;
Thevelein, JM ;
Hohmann, S .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (12) :8290-8300
[38]   A family of novel peroxidases, peroxiredoxins [J].
Rhee, SG ;
Kang, SW ;
Netto, LE ;
Seo, MS ;
Stadtman, ER .
BIOFACTORS, 1999, 10 (2-3) :207-209
[39]   Thioredoxin peroxidase is required for the transcriptional response to oxidative stress in budding yeast [J].
Ross, SJ ;
Findlay, VJ ;
Malakasi, P ;
Morgan, BA .
MOLECULAR BIOLOGY OF THE CELL, 2000, 11 (08) :2631-2642
[40]   Novel sensing mechanisms and targets for the cAMP-protein kinase A pathway in the yeast Saccharomyces cerevisiae [J].
Thevelein, JM ;
de Winde, JH .
MOLECULAR MICROBIOLOGY, 1999, 33 (05) :904-918