RRC ID 84912
Author Miyasaka Y, Yokoyama K, Kozono T, Kitano Y, Miyazaki T, Sakaguchi M, Nishikawa A, Tonozuka T.
Title Structural basis for the recognition of α-1,6-branched α-glucan by GH13_47 α-amylase from Rhodothermus marinus.
Journal Proteins
Abstract Glycoside hydrolase (GH) family 13 is among the main families of enzymes acting on starch; recently, subfamily 47 of GH13 (GH13_47) has been established. The crystal structure and function of a GH13_47 enzyme from Bacteroides ovatus has only been reported to date. This enzyme has α-amylase activity, while the GH13_47 enzymes comprise approximately 800-900 amino acid residues which are almost double those of typical α-amylases. It is important to know how different the GH13_47 enzymes are from other α-amylases. Rhodothermus marinus JCM9785, a thermophilic bacterium, possesses a gene for the GH13_47 enzyme, which is designated here as RmGH13_47A. Its structure has been predicted to be composed of seven domains: N1, N2, N3, A, B, C, and D. We constructed a plasmid encoding Gly266-Glu886, which contains the N3, A, B, and C domains and expressed the protein in Escherichia coli. The enzyme hydrolyzed starch and pullulan by a neopullulanase-type action. Additionally, the enzyme acted on maltotetraose, and saccharides with α-1,6-glucosidic linkages were observed in the products. Following the replacement of the catalytic residue Asp563 with Ala, the crystal structure of the variant D563A in complex with the enzymatic products from maltotetraose was determined; as a result, electron density for an α-1,6-branched pentasaccharide was observed in the catalytic pocket, and Ile762 and Asp763 interacted with the branched chain of the pentasaccharide. These findings suggest that RmGH13_47A is an α-amylase that prefers α-1,6-branched parts of starch to produce oligosaccharides.
Volume 92(8)
Pages 984-997
Published 2024-8-1
DOI 10.1002/prot.26695
PMID 38641972
MeSH Amino Acid Sequence Bacterial Proteins* / chemistry Bacterial Proteins* / genetics Bacterial Proteins* / metabolism Binding Sites Catalytic Domain Cloning, Molecular Crystallography, X-Ray Escherichia coli / genetics Escherichia coli / metabolism Glucans / chemistry Glucans / metabolism Glycoside Hydrolases / chemistry Glycoside Hydrolases / genetics Glycoside Hydrolases / metabolism Hydrolysis Maltose / analogs & derivatives Models, Molecular* Oligosaccharides / chemistry Oligosaccharides / metabolism Protein Binding Protein Conformation, alpha-Helical Protein Interaction Domains and Motifs Recombinant Proteins / chemistry Recombinant Proteins / genetics Recombinant Proteins / metabolism Rhodothermus* / enzymology Rhodothermus* / genetics Starch / chemistry Starch / metabolism Substrate Specificity alpha-Amylases* / chemistry alpha-Amylases* / genetics alpha-Amylases* / metabolism
Resource
General Microbes JCM9785