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When substrate inhibits and inhibitor activates: implications of β-glucosidases

Overview of attention for article published in Biotechnology for Biofuels and Bioproducts, January 2017
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Title
When substrate inhibits and inhibitor activates: implications of β-glucosidases
Published in
Biotechnology for Biofuels and Bioproducts, January 2017
DOI 10.1186/s13068-016-0690-z
Pubmed ID
Authors

Silja Kuusk, Priit Väljamäe

Abstract

β-glucosidases (BGs) catalyze the hydrolysis of β-glycosidic bonds in glucose derivatives. They constitute an important group of enzymes with biotechnological interest like supporting cellulases in degradation of lignocellulose to fermentable sugars. In the latter context, the glucose tolerant BGs are of particular interest. These BGs often show peculiar kinetics, including inhibitory effects of substrates and activating effects of inhibitors, such as glucose or xylose. The mechanisms behind the activating/inhibiting effects are poorly understood. The nonproductive binding of substrate is expected in cases where enzymes with multiple consecutive binding subsites are studied on substrates with a low degree of polymerization. The effects of inhibitors to BGs exerting nonproductive binding of substrate have not been discussed in the literature before. Here, we performed analyses of different reaction schemes using the catalysis by retaining BGs as a model. We found that simple competition of inhibitor with nonproductive binding of substrate can account for the activation of enzyme by inhibitor without involving any allosteric effects. The transglycosylation to inhibitor was also able to explain the activating effect of inhibitor. For both mechanisms, the activation was caused by the increase of kcat with increasing inhibitor concentration, while kcat/Km always decreased. Therefore, the activation by inhibitor was more pronounced at high substrate concentrations. The possible contribution of the two mechanisms in the activation by inhibitor was dependent on the rate-limiting step of glycosidic bond hydrolysis as well as on whether and which glucose-unit-binding subsites are interacting. Knowledge on the mechanisms of the activating/inhibiting effects of inhibitors helps the rational engineering and selection of BGs for biotechnological applications. Provided that the catalysis is consistent with the reaction schemes addressed here and underlying assumptions, the mechanism of activation by inhibitor reported here is applicable for all enzymes exerting nonproductive binding of substrate.

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The data shown below were compiled from readership statistics for 84 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 84 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 15 18%
Student > Ph. D. Student 11 13%
Student > Bachelor 8 10%
Researcher 8 10%
Student > Doctoral Student 5 6%
Other 10 12%
Unknown 27 32%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 20 24%
Agricultural and Biological Sciences 20 24%
Chemical Engineering 4 5%
Chemistry 3 4%
Environmental Science 2 2%
Other 6 7%
Unknown 29 35%