Home
Scholarly Works
Thermobifida fusca cellulases exhibit limited...
Journal article

Thermobifida fusca cellulases exhibit limited surface diffusion on bacterial micro‐crystalline cellulose

Abstract

Elucidation of cellulase-cellulose interactions is key to modeling biomass deconstruction and in understanding the processes that lead to cellulase inactivation. Here, fluorescence recovery after photobleaching and single molecule tracking (SMT) experiments are used to assess the surface diffusion of Thermobifida fusca cellulases on bacterial micro-crystalline cellulose. Our results show that cellulases exhibit limited surface diffusion when bound to crystalline cellulose and that a large fraction of the cellulases remain immobile even at temperatures optimal for catalysis. A comparison of our experimental results to Monte Carlo (MC) simulations, which use published diffusion coefficients to model cellulase displacements, shows that even those enzymes that are mobile on the cellulose surface exhibit significantly slower diffusive motions than previously reported. In addition, it is observed that the enzymes that show significant displacements exhibit complex, non-steady surface motions, which suggest that cellulose-bound cellulases exist in molecular states with different diffusive characteristics. These results challenge the notion that cellulases can freely diffuse over cellulose surfaces without catalyzing bond cleavage.

Authors

Moran‐Mirabal JM; Bolewski JC; Walker LP

Journal

Biotechnology and Bioengineering, Vol. 110, No. 1, pp. 47–56

Publisher

Wiley

Publication Date

January 1, 2013

DOI

10.1002/bit.24604

ISSN

0006-3592

Contact the Experts team