Imaging the Enzymatic Digestion of Bacterial Cellulose Ribbons Reveals the Endo Character of the Cellobiohydrolase Cel6A fromHumicola insolensand Its Mode of Synergy with Cellobiohydrolase Cel7A
- 1 April 2000
- journal article
- research article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 66 (4) , 1444-1452
- https://doi.org/10.1128/aem.66.4.1444-1452.2000
Abstract
Dispersed cellulose ribbons from bacterial cellulose were subjected to digestion with cloned Cel7A (cellobiohydrolase [CBH] I) and Cel6A (CBH II) from Humicola insolens either alone or in a mixture and in the presence of an excess of β-glucosidase. Both Cel7A and Cel6A were effective in partially converting the ribbons into soluble sugars, Cel7A being more active than Cel6A. In combination, these enzymes showed substantial synergy culminating with a molar ratio of approximately two-thirds Cel6A and one-third Cel7A. Ultrastructural transmission electron microscopy (TEM) observations indicated that Cel7A induced a thinning of the cellulose ribbons, whereas Cel6A cut the ribbons into shorter elements, indicating an endo type of action. These observations, together with the examination of the digestion kinetics, indicate that Cel6A can be classified as an endo-processive enzyme, whereas Cel7A is essentially a processive enzyme. Thus, the synergy resulting from the mixing of Cel6A and Cel7A can be explained by the partial endo character of Cel6A. A preparation of bacterial cellulose ribbons appears to be an appropriate substrate, superior toValonia or bacterial cellulose microcrystals, to visualize directly by TEM the endo-processivity of an enzyme such as Cel6A.Keywords
This publication has 57 references indexed in Scilit:
- Structural Changes of the Active Site Tunnel of Humicola insolens Cellobiohydrolase, Cel6A, upon Oligosaccharide Binding,Biochemistry, 1999
- High-resolution crystal structures reveal how a cellulose chain is bound in the 50 Å long tunnel of cellobiohydrolase I from Trichoderma reesei 1 1Edited by K. NagaiJournal of Molecular Biology, 1998
- Trends in biochemistry and enzymology of cellulose degradationBiochemistry, 1990
- Adsorption of two cellobiohydrolases fromTrichoderma reesei to Avicel: Evidence for ?exo-exo? synergism and possible ?loose complex? formationBiotechnology Letters, 1990
- Undirectional degradation of valonia cellulose microcrystals subjected to cellulase actionFEBS Letters, 1985
- Electron microscopy study of the enzymic hydrolysis of Valonia celluloseCarbohydrate Polymers, 1983
- The 1.4‐β‐glucan cellobiohydrolases of Trichoderma reesei QM 9414FEBS Letters, 1980
- Synergism Between Enzymes Involved in the Solubilization of Native CellulosePublished by American Chemical Society (ACS) ,1979
- Anelastic relaxation in crystalline solids, A. S. Nowick and B. S. Berry, Academic Press, New York and London, 1972. 677 pp. $22.50Journal of Polymer Science Part C: Polymer Letters, 1973
- Paracrystalline lattice disorder in cellulose. I. Reappraisal of the application of the two‐phase hypothesis to the analysis of powder x‐ray diffractograms of native and hydrolyzed cellulosic materialsJournal of Polymer Science: Polymer Physics Edition, 1973