Open Access
A DNA aptamer reveals an allosteric site for inhibition in metallo-β-lactamases
Nazmul H Khan
1
,
Anthony A Bui
1
,
Xiao Yang
1
,
R. Bryan Sutton
2
,
Robert W. Shaw
1
,
Benjamin J Wylie
1
,
Michael P Latham
1
Publication type: Journal Article
Publication date: 2019-04-22
scimago Q1
wos Q2
SJR: 0.803
CiteScore: 5.4
Impact factor: 2.6
ISSN: 19326203
PubMed ID:
31009467
Multidisciplinary
Abstract
The hydrolysis of β-lactam antibiotics by β-lactamase enzymes is the most prominent antibiotic resistance mechanism for many pathogenic bacteria. Out of this broad class of enzymes, metallo-β-lactamases are of special clinical interest because of their broad substrate specificities. Several in vitro inhibitors for various metallo-β-lactamases have been reported with no clinical efficacy. Previously, we described a 10-nucleotide single stranded DNA aptamer (10-mer) that inhibits Bacillus cereus 5/B/6 metallo-β-lactamase very effectively. Here, we find that the aptamer shows uncompetitive inhibition of Bacillus cereus 5/B/6 metallo-β-lactamase during cefuroxime hydrolysis. To understand the mechanism of inhibition, we report a 2.5 Å resolution X-ray crystal structure and solution-state NMR analysis of the free enzyme. Chemical shift perturbations were observed in the HSQC spectra for several residues upon titrating with increasing concentrations of the 10-mer. In the X-ray crystal structure, these residues are distal to the active site, suggesting an allosteric mechanism for the aptamer inhibition of the enzyme. HADDOCK molecular docking simulations suggest that the 10-mer docks 26 Å from the active site. We then mutated the three lysine residues in the basic binding patch to glutamine and measured the catalytic activity and inhibition by the 10-mer. No significant inhibition of these mutants was observed by the 10-mer as compared to wild type. Interestingly, mutation of Lys50 (Lys78; according to standard MBL numbering system) resulted in reduced enzymatic activity relative to wild type in the absence of inhibitor, further highlighting an allosteric mechanism for inhibition.
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21
Total citations:
21
Citations from 2024:
5
(23.81%)
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MLA
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GOST
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Khan N. H. et al. A DNA aptamer reveals an allosteric site for inhibition in metallo-β-lactamases // PLoS ONE. 2019. Vol. 14. No. 4. p. e0214440.
GOST all authors (up to 50)
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Khan N. H., Bui A. A., Xiao Yang, Sutton R. B., Shaw R. W., Wylie B. J., Latham M. P. A DNA aptamer reveals an allosteric site for inhibition in metallo-β-lactamases // PLoS ONE. 2019. Vol. 14. No. 4. p. e0214440.
Cite this
RIS
Copy
TY - JOUR
DO - 10.1371/journal.pone.0214440
UR - https://doi.org/10.1371/journal.pone.0214440
TI - A DNA aptamer reveals an allosteric site for inhibition in metallo-β-lactamases
T2 - PLoS ONE
AU - Khan, Nazmul H
AU - Bui, Anthony A
AU - Xiao Yang
AU - Sutton, R. Bryan
AU - Shaw, Robert W.
AU - Wylie, Benjamin J
AU - Latham, Michael P
PY - 2019
DA - 2019/04/22
PB - Public Library of Science (PLoS)
SP - e0214440
IS - 4
VL - 14
PMID - 31009467
SN - 1932-6203
ER -
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BibTex (up to 50 authors)
Copy
@article{2019_Khan,
author = {Nazmul H Khan and Anthony A Bui and Xiao Yang and R. Bryan Sutton and Robert W. Shaw and Benjamin J Wylie and Michael P Latham},
title = {A DNA aptamer reveals an allosteric site for inhibition in metallo-β-lactamases},
journal = {PLoS ONE},
year = {2019},
volume = {14},
publisher = {Public Library of Science (PLoS)},
month = {apr},
url = {https://doi.org/10.1371/journal.pone.0214440},
number = {4},
pages = {e0214440},
doi = {10.1371/journal.pone.0214440}
}
Cite this
MLA
Copy
Khan, Nazmul H., et al. “A DNA aptamer reveals an allosteric site for inhibition in metallo-β-lactamases.” PLoS ONE, vol. 14, no. 4, Apr. 2019, p. e0214440. https://doi.org/10.1371/journal.pone.0214440.