Chiem Kevin, Jani Saumya, Fuentes Brooke, Lin David L, Rasche Madeline E, Tolmasky Marcelo E
Center for Applied Biotechnology Studies, Department of Biological Science, College of Natural Sciences and Mathematics, California State University Fullerton, Fullerton, CA 92834-6850, United States.
Center for Applied Biotechnology Studies, Department of Chemistry and Biochemistry, College of Natural Sciences and Mathematics, California State University Fullerton, Fullerton, CA 92834-6850, United States.
Medchemcomm. 2016 Jan 1;7(1):184-189. doi: 10.1039/C5MD00316D. Epub 2015 Nov 3.
The aminoglycoside 6'--acetyltransferase type Ib, AAC(6')-Ib, confers resistance to clinically relevant aminoglycosides and is the most widely distributed enzyme among AAC(6')-I-producing Gram-negative pathogens. An alternative to counter the action of this enzyme is the development of inhibitors. Glide is a computational strategy for rapidly docking ligands to protein sites and estimating their binding affinities. We docked a collection of 280,000 compounds from 7 sub-libraries of the Chembridge library as ligands to the aminoglycoside binding site of AAC(6')-Ib. We identified a compound, 1-[3-(2-aminoethyl)benzyl]-3-(piperidin-1-ylmethyl)pyrrolidin-3-ol (compound ), that inhibited the acetylation of aminoglycosides with IC values of 39.7 and 34.9 µM when the aminoglycoside substrates assayed were kanamycin A or amikacin, respectively. The growth of an amikacin-resistant clinical strain was inhibited in the presence of a combination of amikacin and compound .
氨基糖苷类6'-N-乙酰转移酶Ib型(AAC(6')-Ib)赋予对临床相关氨基糖苷类的抗性,并且是在产生AAC(6')-I的革兰氏阴性病原体中分布最广泛的酶。对抗这种酶作用的一种替代方法是开发抑制剂。Glide是一种用于将配体快速对接至蛋白质位点并估计其结合亲和力的计算策略。我们将来自Chembridge文库7个子文库的280,000种化合物作为配体对接至AAC(6')-Ib的氨基糖苷类结合位点。我们鉴定出一种化合物,1-[3-(2-氨基乙基)苄基]-3-(哌啶-1-基甲基)吡咯烷-3-醇(化合物 ),当测定的氨基糖苷类底物分别为卡那霉素A或阿米卡星时,其抑制氨基糖苷类乙酰化的IC值分别为39.7和34.9 μM。在阿米卡星和化合物 的组合存在下,耐阿米卡星临床菌株的生长受到抑制。