PHR1 and PHR2 of Candida albicans encode putative glycosidases required for proper cross-linking of β-1,3-and β-1,6-glucans

被引:159
作者
Fonzi, WA [1 ]
机构
[1] Georgetown Univ, Dept Microbiol & Immunol, Washington, DC 20007 USA
关键词
D O I
10.1128/JB.181.22.7070-7079.1999
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
PHR1 and PHR2 encode putative glycosylphosphatidylinositol-anchored cell surface proteins of the opportunistic fungal pathogen Candida albicans. These proteins are functionally related, and their expression is modulated in relation to the pH of the ambient environment in vitro and in vivo. Deletion of either gene results in a pH-conditional defect in cell morphology and virulence. Multiple sequence alignments demonstrated a distant relationship between the Phr proteins and beta-galactosidases. Based on this alignment, site-directed mutagenesis of the putative active-site residues of Phr1p and Phr2p was conducted and two conserved glutamate residues were shown to be essential for activity. By taking advantage of the pH-conditional expression of the genes, a temporal analysis of cell wall changes was performed following a shift of the mutants from permissive to nonpermissive pH. The mutations did not grossly affect the amount of polysaccharides in the wall but did alter their distribution. The most immediate alteration to occur was a fivefold increase in the rate of cross-linking between beta-1,6-glycosylated mannoproteins and chitin. This increase was followed shortly thereafter by a decline in beta-1,3-glucan-associated beta-1,6-glucans and, within several generations, a fivefold increase in the chitin content of the walls. The increased accumulation of chitin-linked glucans was not due to a block in subsequent processing as determined by pulse-chase analysis. Rather, the results suggest that the glucans are diverted to chitin linkage due to the inability of the mutants to establish cross-links between beta-1,6- and beta-1,3-glucans. Based on these and previously published results, it is suggested that the Phr proteins process beta-1,3-glucans and make available acceptor sites for the attachment of beta-1,6-glucans.
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页码:7070 / 7079
页数:10
相关论文
共 52 条
[1]   Gapped BLAST and PSI-BLAST: a new generation of protein database search programs [J].
Altschul, SF ;
Madden, TL ;
Schaffer, AA ;
Zhang, JH ;
Zhang, Z ;
Miller, W ;
Lipman, DJ .
NUCLEIC ACIDS RESEARCH, 1997, 25 (17) :3389-3402
[2]   SITE-DIRECTED MUTAGENIC REPLACEMENT OF GLU-461 WITH GLN IN BETA-GALACTOSIDASE (ESCHERICHIA-COLI) - EVIDENCE THAT GLU-461 IS IMPORTANT FOR ACTIVITY [J].
BADER, DE ;
RING, M ;
HUBER, RE .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1988, 153 (01) :301-306
[3]   YEAST KRE GENES PROVIDE EVIDENCE FOR A PATHWAY OF CELL-WALL BETA-GLUCAN ASSEMBLY [J].
BOONE, C ;
SOMMER, SS ;
HENSEL, A ;
BUSSEY, H .
JOURNAL OF CELL BIOLOGY, 1990, 110 (05) :1833-1843
[4]   THE SACCHAROMYCES-CEREVISIAE STRUCTURAL GENE FOR CHITIN SYNTHASE IS NOT REQUIRED FOR CHITIN SYNTHESIS INVIVO [J].
BULAWA, CE ;
SLATER, M ;
CABIB, E ;
AUYOUNG, J ;
SBURLATI, A ;
ADAIR, WL ;
ROBBINS, PW .
CELL, 1986, 46 (02) :213-225
[5]  
CUPPLES CG, 1990, J BIOL CHEM, V265, P5512
[6]  
CUPPLES CG, 1988, GENETICS, V120, P637
[7]   The pH of the host niche controls gene expression in and virulence of Candida albicans [J].
De Bernardis, F ;
Mühlschlegel, FA ;
Cassone, A ;
Fonzi, WA .
INFECTION AND IMMUNITY, 1998, 66 (07) :3317-3325
[8]  
DUBAIS M, 1956, ANAL CHEM, V28, P350
[9]  
FONZI WA, 1993, GENETICS, V134, P717
[10]  
GEBLER JC, 1992, J BIOL CHEM, V267, P11126