Search Results - "González, Mariano M."
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Cross-class metallo-β-lactamase inhibition by bisthiazolidines reveals multiple binding modes
Published in Proceedings of the National Academy of Sciences - PNAS (28-06-2016)“…Metallo-β-lactamases (MBLs) hydrolyze almost all β-lactam antibiotics and are unaffected by clinically available β-lactamase inhibitors (βLIs). Active-site…”
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In-cell kinetic stability is an essential trait in metallo-β-lactamase evolution
Published in Nature chemical biology (01-09-2023)“…Protein stability is an essential property for biological function. In contrast to the vast knowledge on protein stability in vitro, little is known about the…”
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Optimization of Conformational Dynamics in an Epistatic Evolutionary Trajectory
Published in Molecular biology and evolution (01-07-2016)“…The understanding of protein evolution depends on the ability to relate the impact of mutations on molecular traits to organismal fitness. Biological activity…”
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A general reaction mechanism for carbapenem hydrolysis by mononuclear and binuclear metallo-β-lactamases
Published in Nature communications (14-09-2017)“…Carbapenem-resistant Enterobacteriaceae threaten human health, since carbapenems are last resort drugs for infections by such organisms. Metallo-β-lactamases…”
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Bisthiazolidines: A Substrate-Mimicking Scaffold as an Inhibitor of the NDM‑1 Carbapenemase
Published in ACS infectious diseases (13-11-2015)“…Pathogenic Gram-negative bacteria resistant to almost all β-lactam antibiotics are a major public health threat. Zn(II)-dependent or metallo-β-lactamases…”
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Enantioselective synthesis of new oxazolidinylthiazolidines as enzyme inhibitors
Published in Tetrahedron: asymmetry (15-01-2017)“…[Display omitted] The synthesis of new oxazolidinylthiazolidines bicycles, oxygen analogues of bisthiazolidines, also known as metallo-β-lactamase inhibitors…”
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Cross-class metallo-[Beta]-lactamase inhibition by bisthiazolidines reveals multiple binding modes
Published in Proceedings of the National Academy of Sciences - PNAS (28-06-2016)“…Tre-2/USP6, BUB2, cdc16 domain family member 1 (the TBC domain is the GTPase activating protein domain) (TBC1D1) is a Rab GTPase activating protein that is…”
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Spontaneous esophageal perforation (Boerhaave syndrome) successfully treated with an over-the-scope clip and fully covered metal stent
Published in Gastrointestinal endoscopy (01-03-2016)Get full text
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