An Ultrahigh Resolution Structure of TEM-1 β-Lactamase Suggests a Role for Glu166 as the General Base in Acylation
- 20 April 2002
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 124 (19), 5333-5340
- https://doi.org/10.1021/ja0259640
Abstract
Although TEM-1 β-lactamase is among the best studied enzymes, its acylation mechanism remains controversial. To investigate this problem, the structure of TEM-1 in complex with an acylation transition-state analogue was determined at ultrahigh resolution (0.85 Å) by X-ray crystallography. The quality of the data was such as to allow for refinement to an R-factor of 9.1% and an Rfree of 11.2%. In the resulting structure, the electron density features were clear enough to differentiate between single and double bonds in carboxylate groups, to identify multiple conformations that are occupied by residues and loops, and to assign 70% of the protons in the protein. Unexpectedly, even at pH 8.0 where the protein was crystallized, the active site residue Glu166 is clearly protonated. This supports the hypothesis that Glu166 is the general base in the acylation half of the reaction cycle. This structure suggests that Glu166 acts through the catalytic water to activate Ser70 for nucleophilic attack on the β-lactam ring of the substrate. The hydrolytic mechanism of class A β-lactamases, such as TEM-1, appears to be symmetrical, as are the serine proteases. Apart from its mechanistic implications, this atomic resolution structure affords an unusually detailed view of the structure, dynamics, and hydrogen-bonding networks of TEM-1, which may be useful for the design of inhibitors against this key antibiotic resistance target.Keywords
This publication has 42 references indexed in Scilit:
- ENDOR Structural Characterization of a Catalytically Competent Acylenzyme Reaction Intermediate of Wild-Type TEM-1 β-Lactamase Confirms Glutamate-166 as the Base CatalystBiochemistry, 2001
- Structure-Based Design Guides the Improved Efficacy of Deacylation Transition State Analogue Inhibitors of TEM-1 β-Lactamase,Biochemistry, 2000
- Functional analyses of AmpC β‐lactamase through differential stabilityProtein Science, 1999
- MOLMOL: A program for display and analysis of macromolecular structuresJournal of Molecular Graphics, 1996
- Site-Directed Mutagenesis of Glutamate-166 in .beta.-Lactamase Leads to a Branched Path MechanismBiochemistry, 1994
- Characterization of covalently bound enzyme inhibitors as transition-state analogs by protein stability measurements: Phosphonate monoester inhibitors of .beta.-lactamaseBiochemistry, 1994
- Atomic Resolution (0·83 Å) Crystal Structure of the Hydrophobic Protein Crambin at 130 KJournal of Molecular Biology, 1993
- Site-directed mutagenesis of .beta.-lactamase leading to accumulation of a catalytic intermediateBiochemistry, 1991
- Refined crystal structure of β-lactamase from Staphylococcus aureus PC1 at 2.0 Å resolutionJournal of Molecular Biology, 1991
- Site-directed mutagenesis on TEM-1 ß-lactamase: role of Glul66 in catalysis and substrate bindingProtein Engineering, Design and Selection, 1991