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Expression of cel2 and cel4, two proteins from agaricus bisporus with similarity to fungal cellobiohydrolase i and beta-mannanase, respectively, is regulated by the carbon source (CROSBI ID 78265)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Yague, Ernesto ; Mehak-Žunić, Milena ; Morgan, Louis ; Wood, David ; Thurson, Christofer Expression of cel2 and cel4, two proteins from agaricus bisporus with similarity to fungal cellobiohydrolase i and beta-mannanase, respectively, is regulated by the carbon source // Microbiology (Reading), 143 (1997), 239-244

Podaci o odgovornosti

Yague, Ernesto ; Mehak-Žunić, Milena ; Morgan, Louis ; Wood, David ; Thurson, Christofer

engleski

Expression of cel2 and cel4, two proteins from agaricus bisporus with similarity to fungal cellobiohydrolase i and beta-mannanase, respectively, is regulated by the carbon source

Two new cellulose-growth specific (cel) cDNAs, cel2 and cel4, have been isolated from an Agaricus bisporus cDNA expression library by immunoscreening with an A. bisporus anti-endoglucanase antibody.The deduced amino acid sequences showed that both CEL2 and CEL4 proteins have a modular structure consisiting of a fungal-type cellulose-binding domain (CBD) and a catalitic domain separated by linker region rich in Pro, Ser and Thr. The CEL2 and CEL4 catalitic domains were homologous to fungal cellobiohydrolases (CBH) in family 7 and to fungal mannanases in family 5 of the glycosyl hydrolases, respectively. A previously isolated cDNA derived from a constitutive gene was also sequenced. The deduced amino-acid sequence corresponded to 5-aminolsevulinic acid synthase (ALA), the first enzyme in the haem biosynthetic pathway, and was most similar to other fungal ALAs. RNA analysis showed that the expression of cel2 and cel4 genes was induced by cellulose and repressed by glucose, fructose and lactose. Tthe soluble cellulose derivate CM-cellulose induced mRNA accumulation for cel1 but not cel2, cel3 or cel4. Mannitol, maltose, sorbitol and glycerol decreased cel2 and cel4 mRNA levels to different extents. cel1, cel2, cel3 and cel4 mRNAs all disappeared after the addition of glucose with apparent half-lives of less than 20 min. Whether cel mRNAs have short half-lives or glucose affects the stability of cel transcripts remains to be investigated.

cellobiohydrolase proteins; cel proteins

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Podaci o izdanju

143

1997.

239-244

objavljeno

1350-0872

Povezanost rada

Prehrambena tehnologija