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Thermodynamic Signatures of Substrate Binding for Three Thermobifida fusca Cellulases with Different Modes of Action.

Biochemistry. 2019-03; 
HamreAnne Grethe, KaupangAnita, PayneChristina M, VäljamäePriit, SørlieMo
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Biochemicals … of Chemistry, Biotechnology and Food Science, Norwegian University of Life Sciences, PO Box 5003, N-1432 ?s , Norway. ? Department of Chemical and Materials Engineering, University of Kentucky, 177 F. Paul Anderson Tower, Lexington , Kentucky 40506 , United States … Get A Quote

摘要

The enzymatic breakdown of recalcitrant polysaccharides is achieved by synergistic enzyme cocktails of glycoside hydrolases (GHs) and accessory enzymes. Many GHs are processive, meaning that they stay bound to the substrate between subsequent catalytic interactions. Cellulases are GHs that catalyze the hydrolysis of cellulose [β-1,4-linked glucose (Glc)]. Here, we have determined the relative subsite binding affinity for a glucose moiety as well as the thermodynamic signatures for (Glc) binding to three of the seven cellulases produced by the bacterium Thermobifida fusca. TfCel48A is exo-processive, TfCel9A endo-processive, and TfCel5A endo-nonprocessive. Initial hydrolysis of (Glc) and (Glc) was per... More

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