McKay G A, Thompson P R, Wright G D
Department of Biochemistry, McMaster University, Hamilton, Ontario, Canada.
Biochemistry. 1994 Jun 7;33(22):6936-44. doi: 10.1021/bi00188a024.
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 Km values in the low micromolar range for good substrates such as kanamycin and neomycin, and kcat 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 kcat/Km, but not with Km or kcat. 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.
氨基糖苷磷酸转移酶(APHs)可导致许多临床上有用的氨基糖苷类抗生素在细菌中失活。我们报道了一种肠球菌酶APH(3')-IIIa的特性,该酶通过依赖ATP的O-磷酸化作用使多种氨基糖苷失活。APH(3')-IIIa的过量表达使得每升细胞培养物能够分离出30 - 40毫克的纯蛋白。纯化后的APH(3')-IIIa是单体和二聚体的混合物,且仅随时间缓慢转化为二聚体。通过与2-巯基乙醇孵育,二聚体可解离为单体,这表明二聚化是由二硫键的形成介导的。对于卡那霉素和新霉素等良好底物,单体和二聚体的Km值均在低微摩尔范围内,kcat值为1 - 4 s-1。除阿米卡星和卡那霉素B外,所有氨基糖苷均表现出底物抑制作用。最低抑菌浓度的测定表明抗生素活性与kcat/Km呈正相关,但与Km或kcat无关。对磷酸化卡那霉素A的核磁共振分析直接证明了磷酸基区域特异性转移至抗生素6-氨基己糖环的3'-羟基。对多种氨基糖苷的构效关系分析表明,脱氧链霉胺氨基环醇环在底物结合中起关键作用。这些信息将为未来设计APH(3')-IIIa抑制剂奠定基础。