SITE-DIRECTED MUTAGENESIS OF BETA-LACTAMASE-I - ROLE OF GLU-166

被引:48
作者
LEUNG, YC
ROBINSON, CV
APLIN, RT
WALEY, SG
机构
[1] UNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, OXFORD OX1 3RE, ENGLAND
[2] UNIV OXFORD, DYSON PERRINS LAB, OXFORD OX1 3QY, ENGLAND
[3] UNIV OXFORD, NEW CHEM LAB, OXFORD OX1 3QT, ENGLAND
关键词
D O I
10.1042/bj2990671
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Two Glu-166 mutants of beta-lactamase I from Bacillus cereus 569/H were constructed: one with a lengthened side chain (E166Cmc, the S-carboxymethylcysteine mutant) and the other with the side chain shortened and made non-polar (E166A). Their kinetic properties were studied and compared with those of the wild-type and the E166D mutant (with a shortened side chain) previously made by Gibson, Christensen and Waley (1990) (Biochem. J. 272, 613-619). Surprisingly, with good penicillin substrates, K-m, k(cat.) and k(cat.)/K-m of the two conservative mutants (E166Cmc and E166D) are similar to those of the nonconservative mutant E166A. Their k(cat.) values are 3000-fold lower than that of the wild-type enzyme, showing that Glu-166 is a very important residue. The acylenzyme intermediate of E166A and a good substrate, penicillin V, was trapped by acid-quench and observed by electrospray ionization mass spectrometry, suggesting that Glu-166 is more important in catalysing the deacylation step than the acylation step. The beta-lactamase I E166A mutant is about 200-fold more active than the Bacillus licheniformis E166A mutant with nitrocefin or 6 beta-furylacryloylamidopenicillanic acid as substrate. This suggested that other groups in the active site of the beta-lactamase I mutant may activate the catalytic water molecule for deacylation.
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页码:671 / 678
页数:8
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