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Design and evolution of new catalytic activity with an existing protein scaffold.

Authors :
Park, Hee-Sung
Nam, Sung-Hun
Lee, Jin Kak
Yoon, Chang No
Mannervik, Bengt
Benkovic, Stephen J
Kim, Hak-Sung
Park, Hee-Sung
Nam, Sung-Hun
Lee, Jin Kak
Yoon, Chang No
Mannervik, Bengt
Benkovic, Stephen J
Kim, Hak-Sung
Publication Year :
2006

Abstract

The design of enzymes with new functions and properties has long been a goal in protein engineering. Here, we report a strategy to change the catalytic activity of an existing protein scaffold. This was achieved by simultaneous incorporation and adjustment of functional elements through insertion, deletion, and substitution of several active site loops, followed by point mutations to fine-tune the activity. Using this approach, we were able to introduce beta-lactamase activity into the alphabeta/betaalpha metallohydrolase scaffold of glyoxalase II. The resulting enzyme, evMBL8 (evolved metallo beta-lactamase 8), completely lost its original activity and, instead, catalyzed the hydrolysis of cefotaxime with a (kcat/Km)app of 1.8 x 10(2) (mole/liter)(-1) second(-1), thus increasing resistance to Escherichia coli growth on cefotaxime by a factor of about 100.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1234709795
Document Type :
Electronic Resource