BROAD-SPECTRUM AMINOGLYCOSIDE PHOSPHOTRANSFERASE TYPE-III FROM ENTEROCOCCUS - OVEREXPRESSION, PURIFICATION, AND SUBSTRATE-SPECIFICITY

被引:116
作者
MCKAY, GA [1 ]
THOMPSON, PR [1 ]
WRIGHT, GD [1 ]
机构
[1] MCMASTER UNIV,DEPT BIOCHEM,HAMILTON L8N 3Z5,ON,CANADA
关键词
D O I
10.1021/bi00188a024
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
The aminoglycoside phosphotransferases (APHs) are responsible for the bacterial inactivation of many clinically useful aminoglycoside antibiotics. We report the characterization of an enterococcal enzyme, APH(3')-IIIa, which inactivates a broad spectrum of aminoglycosides by ATP-dependent O-phosphorylation, Overproduction of APH(3')-IIIa has permitted the isolation of 30-40 mg of pure protein/(L of cell culture). Purified APH(3')-IIIa is a mixture of monomer and dimer which is slowly converted to dimer only over time. Dimer could be dissociated into monomer by incubation with 2-mercaptoethanol, suggesting that dimerization is mediated by formation of disulfide bond(s). Both monomer and dimer show K,values in the low micromolar range for good substrates such as kanamycin and neomycin, and k(cat) values of 1-4 s(-1). All aminoglycosides show substrate inhibition except amikacin and kanamycin B. Determination of minimum inhibitory concentrations indicates a positive correlation between antibiotic activity and k(cat)/K-m, but not with K-m or k(cat). NMR analysis of phosphorylated kanamycin A has directly demonstrated regiospecific phosphoryl transfer to the 3'-hydroxyl of the 6-aminohexose ring of the antibiotic. Analysis of structure-activity relationships with a variety of aminoglycosides has revealed that the deoxystreptamine aminocyclitol ring plays a critical role in substrate binding. This information will form the basis for future design of inhibitors of APH(3')-IIIa.
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页码:6936 / 6944
页数:9
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