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Determination of the molecular states of the...
Journal article

Determination of the molecular states of the processive endocellulase Thermobifida fusca Cel9A during crystalline cellulose depolymerization

Abstract

Detailed understanding of cell wall degrading enzymes is important for their modeling and industrial applications, including in the production of biofuels. Here we used Cel9A, a processive endocellulase from Thermobifida fusca, to demonstrate that cellulases that contain a catalytic domain (CD) attached to a cellulose binding module (CBM) by a flexible linker exist in three distinct molecular states. By measuring the ability of a soluble competitor to reduce Cel9A activity on an insoluble substrate, we show that the most common state of Cel9A is bound via its CBM, but with its CD unoccupied by the insoluble substrate. These findings are relevant for kinetic modeling and microscopy studies of modular glycoside hydrolases.

Authors

Kostylev M; Moran‐Mirabal JM; Walker LP; Wilson DB

Journal

Biotechnology and Bioengineering, Vol. 109, No. 1, pp. 295–299

Publisher

Wiley

Publication Date

January 1, 2012

DOI

10.1002/bit.23299

ISSN

0006-3592

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