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Product inhibition of five Hypocrea jecorina cellulases

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논문

Product inhibition of five Hypocrea jecorina cellulases

학술지

Enzyme and microbial technology

저자명

Murphy, L.; Bohlin, C.; Baumann, M.J.; Olsen, S.N.; Sorensen, T.H.; Anderson, L.; Borch, K.; Westh, P.

초록

Product inhibition of cellulolytic enzymes has been deemed a critical factor in the industrial saccharification of cellulosic biomass. Several investigations have addressed this problem using crude enzyme preparations or commercial (mixed) cellulase products, but quantitative information on individual cellulases hydrolyzing insoluble cellulose remains insufficient. Such knowledge is necessary to pinpoint and quantify inhibitory weak-links in cellulose hydrolysis, but has proven challenging to come by. Here we show that product inhibition of mono-component cellulases hydrolyzing unmodified cellulose may be monitored by calorimetry. The key advantage of this approach is that it directly measures the rate of hydrolysis while being essentially blind to the background of added product. We investigated the five major cellulases from Hypocrea jecorina (anamorph: Tricoderma reesei), Cel7A (formerly CBH1), Cel6A (CBH2), Cel7B (EG1), Cel5A (EG2) and Cel12A (EG3), for their sensitivity to the products glucose and cellobiose. The strongest inhibition was found for Cel7A, which showed a 50% activity-loss in 19mM cellobiose (IC<SUB>50</SUB>=19mM). The other exoglucanase, Cel6A, was much less inhibited by cellobiose, but showed the highest sensitivity to glucose among all investigated enzymes. The endoglucanases Cel12A and Cel7B were moderately inhibited by cellobiose (IC<SUB>50</SUB>=60-80mM), and weakly inhibited by glucose (IC<SUB>50</SUB>=350-380mM). The highest resistance to both products was found for Cel5A, which retained about 75% of its activity at the highest investigated concentrations (respectively 65mM cellobiose and 1000mM glucose).

발행연도

2013

발행기관

IPC Science and Technology Press ; Elsevier Science Ltd

ISSN

0141-0229

ISSN

1879-0909

52

3

페이지

pp.163-169

주제어

Endoglucanase; Cellobiohydrolase; Trichorderma reesei; Isothermal titration calorimetry; Glucose; Cellobiose

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1 2023-12-11

논문; 2013-03-01

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