Publication | Open Access
The active site protonation states of perdeuterated Toho-1 β-lactamase determined by neutron diffraction support a role for Glu166 as the general base in acylation
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Citations
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References
2010
Year
EngineeringMolecular BiologyAnalytical Ultracentrifugationβ-Lactamase EnzymeEnzymatic ModificationBiosynthesisGeneral BaseProtein X-ray CrystallographyStructure-function Enzyme KineticsDiffraction SupportBiochemistryActive SitePerdeuterated Toho-1 β-LactamaseDeuterium AtomsStructural BiologyBiomolecular EngineeringNatural SciencesMicrobial ProteomicsEnzyme Catalysis
Room temperature neutron diffraction data of the fully perdeuterated Toho-1 R274N/R276N double mutant β-lactamase in the apo form were used to visualize deuterium atoms within the active site of the enzyme. This perdeuterated neutron structure of the Toho-1 R274N/R276N reveals the clearest picture yet of the ground-state active site protonation states and the complete hydrogen-bonding network in a β-lactamase enzyme. The ground-state active site protonation states detailed in this neutron diffraction study are consistent with previous high-resolution X-ray studies that support the role of Glu166 as the general base during the acylation reaction in the class A β-lactamase reaction pathway.
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