Clinical variants of the native class D β-lactamase of Acinetobacter baumannii pose an emerging threat through increased hydrolytic activity against carbapenems

EC Schroder, ZL Klamer, A Saral… - Antimicrobial agents …, 2016 - Am Soc Microbiol
EC Schroder, ZL Klamer, A Saral, KA Sugg, CM June, T Wymore, A Szarecka, DA Leonard
Antimicrobial agents and chemotherapy, 2016Am Soc Microbiol
The threat posed by the chromosomally encoded class D β-lactamase of Acinetobacter
baumannii (OXA-51/66) has been unclear, in part because of its relatively low affinity and
turnover rate for carbapenems. Several hundred clinical variants of OXA-51/66 have been
reported, many with substitutions of active-site residues. We determined the kinetic
properties of OXA-66 and five clinical variants with respect to a wide variety of β-lactam
substrates. The five variants displayed enhanced activity against carbapenems and in some …
Abstract
The threat posed by the chromosomally encoded class D β-lactamase of Acinetobacter baumannii (OXA-51/66) has been unclear, in part because of its relatively low affinity and turnover rate for carbapenems. Several hundred clinical variants of OXA-51/66 have been reported, many with substitutions of active-site residues. We determined the kinetic properties of OXA-66 and five clinical variants with respect to a wide variety of β-lactam substrates. The five variants displayed enhanced activity against carbapenems and in some cases against penicillins, late-generation cephalosporins, and the monobactam aztreonam. Molecular dynamics simulations show that in OXA-66, P130 inhibits the side-chain rotation of I129 and thereby prevents doripenem binding because of steric clash. A single amino acid substitution at this position (P130Q) in the variant OXA-109 greatly enhances the mobility of both I129 and a key active-site tryptophan (W222), thereby facilitating carbapenem binding. This expansion of substrate specificity represents a very worrisome development for the efficacy of β-lactams against this troublesome pathogen.
American Society for Microbiology
以上显示的是最相近的搜索结果。 查看全部搜索结果

Google学术搜索按钮

example.edu/paper.pdf
搜索
获取 PDF 文件
引用
References