Burk David L, Ghuman Navleen, Wybenga-Groot Leanne E, Berghuis Albert M
Departments of Biochemistry and Microbiology and Immunology, McGill University, Montreal, Quebec H3A 2B4, Canada.
Protein Sci. 2003 Mar;12(3):426-37. doi: 10.1110/ps.0233503.
The rise of antibiotic resistance as a public health concern has led to increased interest in studying the ways in which bacteria avoid the effects of antibiotics. Enzymatic inactivation by several families of enzymes has been observed to be the predominant mechanism of resistance to aminoglycoside antibiotics such as kanamycin and gentamicin. Despite the importance of acetyltransferases in bacterial resistance to aminoglycoside antibiotics, relatively little is known about their structure and mechanism. Here we report the three-dimensional atomic structure of the aminoglycoside acetyltransferase AAC(6')-Ii in complex with coenzyme A (CoA). This structure unambiguously identifies the physiologically relevant AAC(6')-Ii dimer species, and reveals that the enzyme structure is similar in the AcCoA and CoA bound forms. AAC(6')-Ii is a member of the GCN5-related N-acetyltransferase (GNAT) superfamily of acetyltransferases, a diverse group of enzymes that possess a conserved structural motif, despite low sequence homology. AAC(6')-Ii is also a member of a subset of enzymes in the GNAT superfamily that form multimeric complexes. The dimer arrangements within the multimeric GNAT superfamily members are compared, revealing that AAC(6')-Ii forms a dimer assembly that is different from that observed in the other multimeric GNAT superfamily members. This different assembly may provide insight into the evolutionary processes governing dimer formation.
抗生素耐药性作为一个公共卫生问题日益凸显,这使得人们对研究细菌规避抗生素作用方式的兴趣与日俱增。据观察,几种酶家族的酶促失活是细菌对卡那霉素和庆大霉素等氨基糖苷类抗生素产生耐药性的主要机制。尽管乙酰转移酶在细菌对氨基糖苷类抗生素的耐药性中起着重要作用,但人们对其结构和作用机制了解相对较少。在此,我们报告了氨基糖苷类乙酰转移酶AAC(6')-Ii与辅酶A(CoA)复合物的三维原子结构。该结构明确鉴定出了生理相关的AAC(6')-Ii二聚体形式,并揭示出在结合乙酰辅酶A(AcCoA)和CoA的形式下,酶的结构相似。AAC(6')-Ii是乙酰转移酶的GCN5相关N-乙酰转移酶(GNAT)超家族的成员,这是一组尽管序列同源性较低但拥有保守结构基序的多样酶类。AAC(6')-Ii也是GNAT超家族中形成多聚体复合物的酶亚组的成员。对多聚体GNAT超家族成员中的二聚体排列进行了比较,结果显示AAC(6')-Ii形成的二聚体组装与在其他多聚体GNAT超家族成员中观察到的不同。这种不同的组装可能有助于深入了解控制二聚体形成的进化过程。