Abstract
Studies were made on the physical and chemical properties of polysaccharides synthesized by cell-free extracts of Streptococcus mutans, Streptococcus sanguis, and Streptococcus sp. and their susceptibilities to dextranases. Among the polysaccharides examined, insoluble glucans were rather resistant to available dextranase preparations, and the insoluble, sticky glucan produced by S. mutans OMZ 176, which could be important in formation of dental plaques, was the most resistant. By enrichment culture of soil specimens, using OMZ 176 glucans as the sole carbon source, an organism was isolated that produced colonies surrounded by a clear lytic zone on opaque agar plates containing the OMZ 176 glucan. The organism was identified as a strain of Flavobacterium and named the Ek-14 bacterium. EK-14 bacterium was grown in Trypticase soy broth, and an enzyme capable of hydrolyzing the OMZ 176 glucan was concentrated from the culture supernatant and purified by negative adsorption on a diethylaminoethyl-cellulose (DE-32) column and gradient elution chromatography with a carboxymethyl-cellulose (CM-32) column. The enzyme was a basic protein with an isoelectric point of pH 8.5 and molecular weight of 65,000. Its optimum pH was 6.3 and its optimal temperature was 42 C. The purified enzyme released 11% of the total glucose residues of the OMZ 176 glucan as reducing sugars and solubilized about half of the substrate glucan. The products were found to be isomaltose, nigerose, and nigerotriose, with some oligosaccharides. The purified enzyme split the alpha-1,3-glucan endolytically and was inactive toward glucans containing alpha-1,6, alpha-1,4, beta-1,3, beta-1,4, and/or beta-1,6 bonds as the main linkages.
MeSH Terms
Cell-Free System
Dental Plaque/metabolism
Flavobacterium/enzymology
Glycoside Hydrolases/isolation & purification,metabolism
Hydrogen-Ion Concentration
Hydrolysis
Metals/pharmacology
Molecular Weight
Polysaccharides
Polysaccharides, Bacterial/biosynthesis,metabolism
Soil Microbiology
Solubility
Streptococcus/metabolism
Streptococcus mutans/metabolism
Streptococcus sanguis/metabolism
Temperature
Chemicals
Metals
Polysaccharides
Polysaccharides, Bacterial
Glycoside Hydrolases
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Ebisu S
Kato K
Kotani S
Misaki A
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