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Published on: February 15, 2019
Inhibition of bacterial alpha-glucosidases by castanospermine in pure cultures and activated sludge
N Mustafa1, M Thörn, F Sörensson
1Department of Cell and Molecular biology, Microbiology, Göteborg University, P.O. Box 462, 40530 Göteborg, Sweden. Nabaz.Mustafa@gmm.gu.se
Abstract:
Castanospermine (CAST) is a known and potent inhibitor of various alpha-glucosidases in eukaryotes. In this work, we elucidated whether CAST could also be used for determining bacterial alpha-glucosidase activity, when measured with 4-methylumbelliferyl-alpha- D-glucoside as a substrate, both in a complex bacterial community, in activated sludge and in pure cultures of bacterial isolates. We found that 140 microM CAST inhibited alpha-glucosidase activity by 30% in a pure culture of Pseudomonas stutzeri. The alpha-glucosidase activity in Chryseobacterium gleum was inhibited by 90% at a concentration of 150 microM CAST, whereas the alpha-glucosidase in Paracoccus denitrificans was resistant to the inhibitor. CAST (140 microM) reduced alpha-glucosidase activity in activated sludge by 40%, the respiration rate being reduced by only 12%. No significant inhibition of the respiration rate was observed in Ps. stutzeri or Pa. denitrificans, whereas the respiration rate in C. gleum grown in a medium containing starch was inhibited by 50% with 140 microM CAST. No effect of CAST was observed in C. gleum grown in a complex medium. This indicated that CAST, at the concentration used, did not cause a general negative effect on bacterial activity. The results suggest that the CAST assay may potentially be useful in determining whether alpha-glucosidase activity, starch, poly- and disaccharides contribute appreciably to the overall activity of a bacterial community. However, the assay should not be used for quantitative measurements of such activity.

