Bacteria as source of diglycosidase activity: Actinoplanes missouriensis produces 6-O-α-l-rhamnosyl-β-d-glucosidase active on flavonoids
0301 basic medicine
Α-L-Rhamnosidase
Gene Expression
Disaccharides
Rhamnose
Substrate Specificity
https://purl.org/becyt/ford/2.9
03 medical and health sciences
Chalcones
Bacterial Proteins
Β-D-Glucosidase
Escherichia coli
Glycosides
https://purl.org/becyt/ford/2
Cloning, Molecular
Phylogeny
Flavonoids
Hesperidin
Hydrolysis
beta-Glucosidase
Micromonosporaceae
Methylumbelliferyl-Β-D-Rutinoside
Recombinant Proteins
3. Good health
Inverting Glycosidase
DOI:
10.1007/s00253-015-7088-x
Publication Date:
2015-11-09T00:06:49Z
AUTHORS (7)
ABSTRACT
Bacteria represent an underexplored source of diglycosidases. Twenty-five bacterial strains from the genera Actinoplanes, Bacillus, Corynebacterium, Microbacterium, and Streptomyces were selected for their ability to grow in diglycosylated flavonoids-based media. The strains Actinoplanes missouriensis and Actinoplanes liguriae exhibited hesperidin deglycosylation activity (6-O-α-L-rhamnosyl-β-D-glucosidase activity, EC 3.2.1.168), which was 3 to 4 orders of magnitude higher than the corresponding monoglycosidase activities. The diglycosidase production was confirmed in A. missouriensis by zymographic assays and NMR analysis of the released disaccharide, rutinose. The gene encoding the 6-O-α-L-rhamnosyl-β-D-glucosidase was identified in the genome sequence of A. missouriensis 431(T) (GenBank accession number BAL86042.1) and functionally expressed in Escherichia coli. The recombinant protein hydrolyzed hesperidin and hesperidin methylchalcone, but not rutin, which indicates its specificity for 7-O-rutinosylated flavonoids. The protein was classified into the glycoside hydrolase family 55 (GH55) in contrast to the known eukaryotic diglycosidases, which belong to GH1 and GH5. These findings demonstrate that organisms other than plants and filamentous fungi can contribute to an expansion of the diglycosidase toolbox.
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