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Deletion analysis of the starch-binding domain of Aspergillus glucoamylase.
- Source :
-
Protein engineering [Protein Eng] 1995 Oct; Vol. 8 (10), pp. 1049-55. - Publication Year :
- 1995
-
Abstract
- The large form of glucoamylase (GAI) from Aspergillus awamori (EC 3.2.1.3) binds strongly to native granular starch, whereas a truncated form (GAII) which lacks 103 C-terminal residues, does not. This C-terminal region, conserved among fungal glucoamylases and other starch-degrading enzymes, is part of an independent starch-binding domain (SBD). To investigate the SBD boundaries and the function of conserved residues in two putative substrate-binding sites, five gluco-amylase mutants were constructed with extensive deletions in this region for expression in Saccharomyces cerevisiae. Progressive loss of both starch-binding and starch-hydrolytic activity occurred upon removal of eight and 25 C-terminal amino acid residues, or 21 and 52 residues close to the N-terminus, confirming the requirement for the entire region in formation of a functional SBD. C-terminal deletions strongly impaired SBD function, suggesting a more important role for one of the putative binding sites. A GAII phenocopy showed a nearly complete loss of starch-binding and starch-hydrolytic activity. The deletions did not affect enzyme activity on soluble starch or thermo-stability of the enzyme, confirming the independence of the catalytic domain from the SBD.
- Subjects :
- Amino Acid Sequence
Base Sequence
Binding Sites genetics
Conserved Sequence
DNA, Fungal genetics
Enzyme Stability genetics
Glucan 1,4-alpha-Glucosidase metabolism
Molecular Sequence Data
Molecular Structure
Plasmids genetics
Protein Engineering
Saccharomyces cerevisiae genetics
Sequence Deletion
Starch
Temperature
Aspergillus enzymology
Aspergillus genetics
Glucan 1,4-alpha-Glucosidase chemistry
Glucan 1,4-alpha-Glucosidase genetics
Subjects
Details
- Language :
- English
- ISSN :
- 0269-2139
- Volume :
- 8
- Issue :
- 10
- Database :
- MEDLINE
- Journal :
- Protein engineering
- Publication Type :
- Academic Journal
- Accession number :
- 8771186
- Full Text :
- https://doi.org/10.1093/protein/8.10.1049