The Aspergillus niger MADS-box transcription factor RlmA is required for cell wall reinforcement in response to cell wall stress

被引:70
作者
Damveld, RA
Arentshorst, M
Franken, A
vanKuyk, PA
Klis, FM
van den Hondel, CAMJJ
Ram, AFJ
机构
[1] Leiden State Univ, Inst Biol, Clusius Lab, Fungal Genet Res Grp, NL-2333 AL Leiden, Netherlands
[2] Univ Amsterdam, Swammerdam Inst Life Sci, NL-1018 WV Amsterdam, Netherlands
[3] TNO Qual Life, NL-3500 AJ Zeist, Netherlands
关键词
D O I
10.1111/j.1365-2958.2005.04827.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
In Aspergillus niger, the genes coding for glutamine:fructose-6-phosphate amidotransferase (gfaA) and alpha-1,3-glucan synthase (agsA) are induced in response to cell wall stress. In silico analysis of the promoter region of the two genes revealed the presence of putative DNA binding sites for transcription factors involved in stress responses, including sites identical to the Saccharomyces cerevisiae Rlm1p and Msn2p/Msn4p transcription factors. Promoter analysis indicated that the induction of the agsA gene in response to cell wall stress is fully dependent on a putative Rlm1p binding site in its promoter region. Database searches revealed the presence of S. cerevisiae Rlm1p homologues in most filamentous fungi examined, including A. niger. Deletion of the RLM1 homologue, named rlmA in A. niger, completely eliminated the induction of agsA and resulted in a twofold reduced induction of gfaA during Calcofluor White-induced cell wall stress. The rise in cell wall chitin in the presence of Calcofluor White was also affected in the rlmA deletion strain. In addition, the deletion strain was more sensitive towards cell wall stress agents. Our results indicate that A. niger responds to cell wall stress by transcriptional activation of cell wall reinforcing genes including agsA and gfaA through an Rlm1p-like transcription factor. We propose that such a cell wall salvage mechanism is wide spread in filamentous fungi.
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页码:305 / 319
页数:15
相关论文
共 66 条
[11]   Cell wall perturbation in yeast results in dual phosphorylation of the Slt2/Mpk1 MAP kinase and in an Slt2-mediated increase in FKS2-lacZ expression, glucanase resistance and thermotolerance [J].
de Nobel, H ;
Ruiz, C ;
Martin, H ;
Morris, W ;
Brul, S ;
Molina, M ;
Klis, FM .
MICROBIOLOGY-SGM, 2000, 146 :2121-2132
[12]   The Saccharomyces cerevisiae MADS-box transcription factor Rlm1 is a target for the Mpk1 mitogen-activated protein kinase pathway [J].
Dodou, E ;
Treisman, R .
MOLECULAR AND CELLULAR BIOLOGY, 1997, 17 (04) :1848-1859
[13]   StuAp is a sequence-specific transcription factor that regulates developmental complexity in Aspergillus nidulans [J].
Dutton, JR ;
Johns, S ;
Miller, BL .
EMBO JOURNAL, 1997, 16 (18) :5710-5721
[14]   FINE-STRUCTURE ANALYSES OF THE DROSOPHILA AND SACCHAROMYCES HEAT-SHOCK FACTOR - HEAT-SHOCK ELEMENT INTERACTIONS [J].
FERNANDES, M ;
XIAO, H ;
LIS, JT .
NUCLEIC ACIDS RESEARCH, 1994, 22 (02) :167-173
[15]  
Fontaine T, 2000, J BIOL CHEM, V275, P27594
[16]   Mitogen-activated protein kinase Mkp1 of Pneumocystis carinii complements the slt2Δ defect in the cell integrity pathway of Saccharomyces cerevisiae [J].
Fox, D ;
Smulian, AG .
MOLECULAR MICROBIOLOGY, 1999, 34 (03) :451-462
[17]   Mkp1 of Pneumocystis carinii associates with the yeast transcription factor Rlm1 via a mechanism independent of the activation state [J].
Fox, D ;
Smulian, AG .
CELLULAR SIGNALLING, 2000, 12 (06) :381-390
[18]   The global transcriptional response to transient cell wall damage in Saccharomyces cerevisiae and its regulation by the cell integrity signaling pathway [J].
García, R ;
Bermejo, C ;
Grau, C ;
Pérez, R ;
Rodríguez-Peña, JM ;
Francois, J ;
Nombela, C ;
Arroyo, J .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (15) :15183-15195
[19]   A NOVEL STRATEGY FOR THE ISOLATION OF DEFINED PYRG MUTANTS AND THE DEVELOPMENT OF A SITE-SPECIFIC INTEGRATION SYSTEM FOR ASPERGILLUS-AWAMORI [J].
GOUKA, RJ ;
HESSING, JGM ;
STAM, H ;
MUSTERS, W ;
VANDENHONDEL, CAMJJ .
CURRENT GENETICS, 1995, 27 (06) :536-540
[20]   Aspergillus nidulans RhoA is involved in polar growth, branching, and cell wall synthesis [J].
Guest, GM ;
Lin, XR ;
Momany, M .
FUNGAL GENETICS AND BIOLOGY, 2004, 41 (01) :13-22