The Journal of Biochemistry
Online ISSN : 1756-2651
Print ISSN : 0021-924X
Two Additional Carbohydrate-Binding Sites of β-Amylase from Bacillus cereus var. mycoides Are Involved in Hydrolysis and Raw Starch-Binding
Zhengmao YeHideo MiyakeMaki TatsumiShigenori NishimuraYasunori Nitta
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2004 Volume 135 Issue 3 Pages 355-363

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Abstract

In the previous X-ray crystallographic study, it was found that β-amylase from Bacillus cereus var. mycoides has three carbohydrate-binding sites aside from the active site: two (Site2 and Site3) in domain B and one (Site1) in domain C. To investigate the roles of these sites in the catalytic reaction and raw starch-binding, Site1 and Site2 were mutated. From analyses of the raw starch-binding of wild-type and mutant enzymes, it was found that Sitel contributes to the binding affinity to raw-starch more than Site2, and that the binding capacity is maintained when either Site1 or Site2 exists. The raw starch-digesting ability of this enzyme was poor. From inhibition studies by maltitol, GGX and α-CD for hydrolyses of maltopentaose (G5) and amylose (-DPn=16) catalyzed by wild-type and mutant enzymes, it was found that α-CD is a competitive inhibitor, while, maltitol behaves as a mixed-type or competitive inhibitor depending on the chain length of the substrate and the mutant enzyme. From the analysis of the inhibition mechanism, we conclude that the bindings of maltitol and GGX to Site2 in domain B form an abortive ESI complex when amylose (-DPn=16) is used as a substrate.

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