Abstract
Cyclodextrin glycosyltransferase (CGTase) catalyzes the formation of cyclodextrins from starch. Among the CGTases with known three-dimensional structure, Thermoanaerobacterium thermosulfurigenes CGTase has the highest thermostability. By replacing amino acid residues in the B-domain of Bacillus circulans CGTase with those from T. thermosulfurigenes CGTase, we identified a B. circulans CGTase mutant (with N188D and K192R·mutations), with a strongly increased activity half-life at 60°C. Asp188 and Arg192 form a salt bridge in T. thermosulfurigenes CGTase. Structural analysis of the B. circulans CGTase mutant revealed that this salt bridge is also formed in the mutant. Thus, the activity half-life of this enzyme can be enhanced by rational protein engineering. © 2003 Wiley-Liss, Inc.
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CITATION STYLE
Leemhuis, H., Rozeboom, H. J., Dijkstra, B. W., & Dijkhuizen, L. (2004). Improved Thermostability of Bacillus circulans Cyclodextrin Glycosyltransferase by the Introduction of a Salt Bridge. Proteins: Structure, Function and Genetics, 54(1), 128–134. https://doi.org/10.1002/prot.10516
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