Department of Biochemistry, McGill University, Montreal, Quebec H3G 1Y6.
Department of Microbiology and Immunology, McGill University, Montreal, Quebec H3A 2B4, Canada.
J Biol Chem. 2010 Mar 26;285(13):9545-9555. doi: 10.1074/jbc.M109.038364. Epub 2010 Jan 19.
Aminoglycoside phosphotransferases (APHs) constitute a diverse group of enzymes that are often the underlying cause of aminoglycoside resistance in the clinical setting. Several APHs have been extensively characterized, including the elucidation of the three-dimensional structure of two APH(3') isozymes and an APH(2'') enzyme. Although many APHs are plasmid-encoded and are capable of inactivating numerous 2-deoxystreptmaine aminoglycosides with multiple regiospecificity, APH(9)-Ia, isolated from Legionella pneumophila, is an unusual enzyme among the APH family for its chromosomal origin and its specificity for a single non-2-deoxystreptamine aminoglycoside substrate, spectinomycin. We describe here the crystal structures of APH(9)-Ia in its apo form, its binary complex with the nucleotide, AMP, and its ternary complex bound with ADP and spectinomycin. The structures reveal that APH(9)-Ia adopts the bilobal protein kinase-fold, analogous to the APH(3') and APH(2'') enzymes. However, APH(9)-Ia differs significantly from the other two types of APH enzymes in its substrate binding area and that it undergoes a conformation change upon ligand binding. Moreover, kinetic assay experiments indicate that APH(9)-Ia has stringent substrate specificity as it is unable to phosphorylate substrates of choline kinase or methylthioribose kinase despite high structural resemblance. The crystal structures of APH(9)-Ia demonstrate and expand our understanding of the diversity of the APH family, which in turn will facilitate the development of new antibiotics and inhibitors.
氨基糖苷磷酸转移酶(APH)构成了一组多样化的酶,它们通常是临床中氨基糖苷类抗生素耐药的根本原因。已经对几种 APH 进行了广泛的特征描述,包括阐明两种 APH(3')同工酶和一种 APH(2'')酶的三维结构。尽管许多 APH 是质粒编码的,并且能够使多种 2-去氧链霉胺氨基糖苷类抗生素具有多种区域特异性失活,但分离自军团菌属的 APH(9)-Ia 在 APH 家族中是一种不寻常的酶,因为它的染色体起源及其对单个非 2-去氧链霉胺氨基糖苷类抗生素底物大观霉素的特异性。我们在此描述了 APH(9)-Ia 的apo 形式、与核苷酸 AMP 的二元复合物以及与 ADP 和大观霉素结合的三元复合物的晶体结构。这些结构表明,APH(9)-Ia 采用双叶蛋白激酶折叠,类似于 APH(3')和 APH(2'')酶。然而,APH(9)-Ia 在其底物结合区域与其他两种类型的 APH 酶有很大的不同,并且在配体结合时会发生构象变化。此外,动力学测定实验表明,尽管结构高度相似,APH(9)-Ia 具有严格的底物特异性,因为它无法磷酸化胆碱激酶或甲基硫代核糖激酶的底物。APH(9)-Ia 的晶体结构证明并扩展了我们对 APH 家族多样性的理解,这反过来又将促进新抗生素和抑制剂的开发。