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Characterization of a highly efficient antibiotic-degrading metallo-β-lactamase obtained from an uncultured member of a permafrost community
- Source :
- Metallomics : integrated biometal science. 9(8)
- Publication Year :
- 2017
-
Abstract
- Antibiotic resistance is a major global health problem, one that threatens to derail the benefits garnered from arguably the greatest success of modern medicine, the discovery of antibiotics. Among the most potent agents contributing to antibiotic resistance are metallo-β-lactamases (MBLs). The discovery of MBL-like enzymes in microorganisms that are not in contact with the human population is of particular concern as these proteins already have the in-built capacity to inactivate antibiotics, even though they may not need MBL activity for their survival. Here, we demonstrate that a microbiome from a remote and frozen environment in Alaska harbours at least one highly efficient MBL, LRA-8. LRA-8 is homologous to the B3 subgroup of MBLs and has a substrate profile and catalytic properties similar to well-known members of this enzyme family, which are expressed by major human pathogens. LRA-8 is predominantly a penicillinase, but is also active towards carbapenems, but not cephalosporins. Spectroscopic studies indicate that LRA-8 has an active site structure similar to that of other MBLs (in particular B3 subgroup representative AIM-1), and a combination of steady-state and pre-steady-state kinetic data demonstrate that the enzyme is likely to employ a metal ion-bridging hydroxide to initiate catalysis. The rate-limiting step is the decay of a chromophoric, tetrahedral intermediate, as is observed in various other MBLs. Thus, studying the properties of such “pristine” MBL-like proteins may provide insight into the structural plasticity of this family of enzymes that may facilitate functional promiscuity, while important insight into the evolution of MBLs may also be gained.
- Subjects :
- 0301 basic medicine
Models, Molecular
Modern medicine
medicine.drug_class
030106 microbiology
Antibiotics
Population
Biophysics
Permafrost
Sequence Homology
Human pathogen
010402 general chemistry
01 natural sciences
Biochemistry
Catalysis
beta-Lactamases
Microbiology
Substrate Specificity
Biomaterials
03 medical and health sciences
Antibiotic resistance
Bacterial Proteins
medicine
Humans
Microbiome
Amino Acid Sequence
education
Genetics
chemistry.chemical_classification
education.field_of_study
biology
Metals and Alloys
Active site
0104 chemical sciences
Anti-Bacterial Agents
Enzyme
Phenotype
chemistry
Chemistry (miscellaneous)
Metals
biology.protein
Metagenome
Subjects
Details
- ISSN :
- 1756591X
- Volume :
- 9
- Issue :
- 8
- Database :
- OpenAIRE
- Journal :
- Metallomics : integrated biometal science
- Accession number :
- edsair.doi.dedup.....a461c7ef9885f414ce58c578df23d807