Development of a Sensitive and Specific Enzyme-linked Immunosorbent Assay for Detecting and Quantifying CMY-2 and SHV Beta-lactamases
Overview
Affiliations
Polyclonal rabbit antibodies against SHV-1 and CMY-2 beta-lactamases were produced and characterized, and enzyme-linked immunosorbent assays (ELISAs) were developed. Immunoblots revealed that the anti-SHV-1 antibody recognized SHV-1 but did not recognize TEM-1, K-1, OXA-1, or any AmpC beta-lactamase tested. The anti-CMY-2 antibody detected Escherichia coli CMY-2, Enterobacter cloacae P99, Klebsiella pneumoniae ACT-1, and the AmpC beta-lactamases of Enterobacter aerogenes, Morganella morganii, and Citrobacter freundii. No cross-reactivity of the anti-CMY-2 antibody was seen against laboratory strains of E. coli possessing TEM-1, SHV-1, K-1, or OXA-1 beta-lactamases. Operating conditions for performing ELISAs were optimized. Both anti-CMY-2 and anti-SHV-1 antibodies detected picogram quantities of purified protein in ELISAs. The reactivity of the anti-CMY-2 antibody was tested against a number of AmpC beta-lactamases by assaying known quantities of purified enzymes in ELISAs (AmpC beta-lactamases of M. morganii, C. freundii, E. coli, and E. cloacae). As the homology to CMY-2 beta-lactamase decreased, the minimum level needed for detection increased (e.g., 94% homology recognized at 1 ng/ml and 71% homology recognized at 10 ng/ml). The ELISAs were used to assay unknown clinical isolates for AmpC and SHV beta-lactamases, and the results were confirmed with PCR amplification of bla(AmpC) and bla(SHV) genes. Overall, we found that our ELISAs were at least 95% sensitive and specific for detecting SHV and AmpC beta-lactamases. The ELISA format can facilitate the identification of AmpC and SHV beta-lactamases and can be used to quantify relative amounts of beta-lactamase enzymes in clinical and laboratory isolates.
Development of Nanobodies as Theranostic Agents against CMY-2-Like Class C β-Lactamases.
Cawez F, Mercuri P, Morales-Yanez F, Maalouf R, Vandevenne M, Kerff F Antimicrob Agents Chemother. 2023; 67(4):e0149922.
PMID: 36892280 PMC: 10112224. DOI: 10.1128/aac.01499-22.
Chittireddy H, Kumar J, Bhimireddy A, Rafi Shaik M, Shaik A, Alwarthan A Molecules. 2022; 27(22).
PMID: 36432023 PMC: 9696115. DOI: 10.3390/molecules27227920.
Abdelrahman D, Taha A, Dafaallah M, Mohammed A, El Hussein A, Hashim A F1000Res. 2021; 9:774.
PMID: 33363717 PMC: 7737708. DOI: 10.12688/f1000research.24818.3.
Barnes M, Taracila M, Rutter J, Bethel C, Galdadas I, Hujer A mBio. 2018; 9(6).
PMID: 30538183 PMC: 6299481. DOI: 10.1128/mBio.02085-18.
SHV-129: A Gateway to Global Suppressors in the SHV β-Lactamase Family?.
Winkler M, Bonomo R Mol Biol Evol. 2015; 33(2):429-41.
PMID: 26531195 PMC: 4909130. DOI: 10.1093/molbev/msv235.