A variety of roles for versatile zinc in metallo-β-lactamases.
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Crystal structure of human persulfide dioxygenase: structural basis of ethylmalonic encephalopathy.Structural Basis of Metallo-β-Lactamase Inhibition by Captopril StereoisomersPlasmids from the gut microbiome of cabbage root fly larvae encode SaxA that catalyses the conversion of the plant toxin 2-phenylethyl isothiocyanate.Crystal Structure of DIM-1, an Acquired Subclass B1 Metallo-β-Lactamase from Pseudomonas stutzeri.Probing the mechanisms for the selectivity and promiscuity of methyl parathion hydrolase.Triazolylthioacetamide: A Valid Scaffold for the Development of New Delhi Metallo-β-Lactmase-1 (NDM-1) InhibitorsStructural Insights into Recognition of Hydrolyzed Carbapenems and Inhibitors by Subclass B3 Metallo-β-Lactamase SMB-1.Cross-class metallo-β-lactamase inhibition by bisthiazolidines reveals multiple binding modes.Insights into an evolutionary strategy leading to antibiotic resistance.Characterization of a highly efficient antibiotic-degrading metallo-β-lactamase obtained from an uncultured member of a permafrost community.The road to avibactam: the first clinically useful non-β-lactam working somewhat like a β-lactam.The Role of Active Site Flexible Loops in Catalysis and of Zinc in Conformational Stability of Bacillus cereus 569/H/9 β-Lactamase.Comparative Study of a Novel Biochemical Assay, the Rapidec Carba NP Test, for Detecting Carbapenemase-Producing Enterobacteriaceae.Structural basis of metallo-β-lactamase, serine-β-lactamase and penicillin-binding protein inhibition by cyclic boronates.Studying the active-site loop movement of the São Paolo metallo-β-lactamase-1†Electronic supplementary information (ESI) available: Procedures for protein expression and purification, 19F-labelling, crystallisation, data collection, and structure deCyclobutanone Mimics of Intermediates in Metallo-β-Lactamase Catalysis.High prevalence of blaVIM-1 gene in bacteria from Brazilian soil.AIM-1: An Antibiotic-Degrading Metallohydrolase That Displays Mechanistic Flexibility.Structure activity relationship studies on rhodanines and derived enethiol inhibitors of metallo-β-lactamases.Antibiotic Hybrids: the Next Generation of Agents and Adjuvants against Gram-Negative Pathogens?Structural and Kinetic Studies of the Potent Inhibition of Metallo-β-lactamases by 6-Phosphonomethylpyridine-2-carboxylates.Diversity and Proliferation of Metallo-β-Lactamases: a Clarion Call for Clinically Effective Metallo-β-Lactamase Inhibitors
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P2860
A variety of roles for versatile zinc in metallo-β-lactamases.
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article científic
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article scientifique
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articol științific
@ro
articolo scientifico
@it
artigo científico
@gl
artigo científico
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artigo científico
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artikel ilmiah
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artikull shkencor
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artículo científico
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name
A variety of roles for versatile zinc in metallo-β-lactamases.
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type
label
A variety of roles for versatile zinc in metallo-β-lactamases.
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prefLabel
A variety of roles for versatile zinc in metallo-β-lactamases.
@en
P2860
P356
P1433
P1476
A variety of roles for versatile zinc in metallo-β-lactamases
@en
P2093
C F Damblon
P2860
P304
P356
10.1039/C4MT00066H
P577
2014-07-01T00:00:00Z