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Structural and mechanistic insights into the inhibition of class C beta-lactamases through the adenylylation of the nucleophilic serine

Title
Structural and mechanistic insights into the inhibition of class C beta-lactamases through the adenylylation of the nucleophilic serine
Author
이진원
Keywords
ENTEROBACTER-CLOACAE P99; EXTENDED-SPECTRUM CEPHALOSPORINASES; TRANSITION-STATE ANALOG; CLASS-A; PHOSPHONATE; ANTIBIOTICS; AVIBACTAM; EPIDEMIOLOGY; INACTIVATION; DERIVATIVES
Issue Date
2017-03
Publisher
OXFORD UNIV PRESS
Citation
JOURNAL OF ANTIMICROBIAL CHEMOTHERAPY, v. 72, no. 3, page. 735-743
Abstract
Objectives: Investigation into the adenylylation of the nucleophilic serine in AmpC BER and CMY-10 extended spectrumclass C beta-lactamases. Methods: The formation and the stability of the adenylate adduct were examined by X-ray crystallography and MS. Inhibition assays for kinetic parameters were performed by monitoring the hydrolytic activity of AmpC BER and CMY-10 using nitrocefin as a reporter substrate. The effect of adenosine 50'-(P-acetyl) monophosphate ( acAMP) on the MIC of ceftazidime was tested with four Gram-negative clinical isolates. Results: The crystal structures and MS analyses confirmed the acAMP-mediated adenylylation of the nucleophilic serine in AmpC BER and CMY-10. acAMP inhibited AmpC BER and CMY-10 through the adenylylation of the nucleophilic serine, which could bemodelled as a two-stepmechanism. The initial non-covalent binding of acAMP to the active site is followed by the covalent attachment of its AMP moiety to the nucleophilic serine. The inhibition efficiencies (k(inact)/K-I) of acAMP against AmpC BER and CMY-10 were determined to be 320 and 140 M(-1)s(-1), respectively. The combination of ceftazidime and acAMP reduced the MIC of ceftazidime against the tested bacteria. Conclusions: Our structural and kinetic studies revealed the detailed mechanismof adenylylation of the nucleophilic serine and may serve as a starting point for the design of novel class C beta-lactamase inhibitors on the basis of the nucleotide scaffold.
URI
https://academic.oup.com/jac/article/72/3/735/2724578https://repository.hanyang.ac.kr/handle/20.500.11754/113426
ISSN
0305-7453; 1460-2091
DOI
10.1093/jac/dkw491
Appears in Collections:
COLLEGE OF NATURAL SCIENCES[S](자연과학대학) > LIFE SCIENCE(생명과학과) > Articles
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