Comparison of gene structures and enzymatic properties between two endoglucanases from Humicola grisea

Citation
S. Takashima et al., Comparison of gene structures and enzymatic properties between two endoglucanases from Humicola grisea, J BIOTECH, 67(2-3), 1999, pp. 85-97
Citations number
24
Categorie Soggetti
Biotecnology & Applied Microbiology",Microbiology
Journal title
JOURNAL OF BIOTECHNOLOGY
ISSN journal
01681656 → ACNP
Volume
67
Issue
2-3
Year of publication
1999
Pages
85 - 97
Database
ISI
SICI code
0168-1656(19990122)67:2-3<85:COGSAE>2.0.ZU;2-1
Abstract
We have cloned two endoglucanase genes (egl3 and egl4) from a thermophilic fungus, Humicola grisea. The coding region of the egl3 gene was interrupted by an intron of 56-bp, and the deduced amino acid sequence of the egl3 gen e was 305 amino acids in length and showed 98.4% identity with Humicola ins olens EGV. The coding region of the egl4 gene was also interrupted by an in tron of 173-bp, which contains 34 TTC repeated sequence units, and the dedu ced amino acid sequence of the egl4 gene was 227 amino acids in length and showed 61.5% identity with H. grisea EGL3. The typical hinge and the cellul ose-binding domain were observed in the C-terminal region of EGL3, but they were not observed in EGL4. In the 5' upstream region of both genes, there were a TATA box or its similar sequence, CAAT motifs, and 6-bp sites which are identical or similar to the consensus sequence for binding a catabolite repressor CREA in Aspergillus nidulans. The egl3 and the egl4 genes were e xpressed in Aspergillus oryzae, and the translation products were purified. The fusion protein, EGL4CBD, which consists of a catalytic domain of EGL4 and the C-terminal region of EGL3, was also constructed and produced by A. oryzae, and purified. These enzymes showed relatively high activity toward carboxymethyl cellulose (CMC) and could not hydrolyze p-nitrophenyl-beta-D- glucoside and p-nitrophenyl-beta-D-cellobioside. The positive effect of sub stituting the C-terminal region of EGL4 with that of EGL3 was observed in t he hydrolysis of CMC. (C) 1999 Elsevier Science B.V. All rights reserved.