Literature DB >> 30150473

Active-Site Conformational Fluctuations Promote the Enzymatic Activity of NDM-1.

Hongmin Zhang1,2, Guixing Ma3,2, Yifan Zhu3,2, Lingxiao Zeng4, Ashfaq Ahmad3,2, Changzhi Wang3,2, Bo Pang4, Huiyan Fang5, Liqing Zhao5, Quan Hao6.   

Abstract

β-Lactam antibiotics are the mainstay for the treatment of bacterial infections. However, elevated resistance to these antibiotics mediated by metallo-β-lactamases (MBLs) has become a global concern. New Delhi metallo-β-lactamase-1 (NDM-1), a newly added member of the MBL family that can hydrolyze almost all β-lactam antibiotics, has rapidly spread all over the world and poses serious clinical threats. Broad-spectrum and mechanism-based inhibitors against all MBLs are highly desired, but the differential mechanisms of MBLs toward different antibiotics pose a great challenge. To facilitate the design of mechanism-based inhibitors, we investigated the active-site conformational changes of NDM-1 through the determination of a series of 15 high-resolution crystal structures in native form and in complex with products and by using biochemical and biophysical studies, site-directed mutagenesis, and molecular dynamics computation. The structural studies reveal the consistency of the active-site conformations in NDM-1/product complexes and the fluctuation in native NDM-1 structures. The enzymatic measurements indicate a correlation between enzymatic activity and the active-site fluctuation, with more fluctuation favoring higher activity. This correlation is further validated by structural and enzymatic studies of the Q123G mutant. Our combinational studies suggest that active-site conformational fluctuation promotes the enzymatic activity of NDM-1, which may guide further mechanism studies and inhibitor design.
Copyright © 2018 American Society for Microbiology.

Entities:  

Keywords:  NDM-1; conformational change; metallo-β-lactamase; microbial antibiotic resistance; structure-based drug design

Mesh:

Substances:

Year:  2018        PMID: 30150473      PMCID: PMC6201099          DOI: 10.1128/AAC.01579-18

Source DB:  PubMed          Journal:  Antimicrob Agents Chemother        ISSN: 0066-4804            Impact factor:   5.191


  55 in total

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Authors:  Dustin T King; Liam J Worrall; Robert Gruninger; Natalie C J Strynadka
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