A Low-Barrier Hydrogen Bond in the Catalytic Triad of Serine Proteases
Science · 1994 · 733 citations · 27 references
Spectroscopic properties of chymotrypsin and model compounds indicate that a low-barrier hydrogen bond participates in the mechanism of serine protease action. A low-barrier hydrogen bond between N delta 1 of His57 and the beta-carboxyl group of Asp102 in chymotrypsin can facilitate the formation of the tetrahedral adduct, and the nuclear magnetic resonance properties of this proton indicate that it is a low-barrier hydrogen bond. These conclusions are supported by the chemical shift of this proton, the deuterium isotope effect on the chemical shift, and the properties of hydrogen-bonded model compounds in organic solvents, including the hydrogen bond in cis-urocanic acid, in which the imidazole ring is internally hydrogen-bonded to the carboxyl group.
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Low-Barrier Hydrogen Bonds and Enzymic Catalysis
W. W. Cleland, Maurice M. Kreevoy · Science · 1994
1.1K citations
Role of a Buried Acid Group in the Mechanism of Action of Chymotrypsin
D. M. Blow, Jens J. Birktoft, B. S. Hartley · Nature · 1969
1.1K citations
Subtilisin. Stereochemical mechanism involving transition-state stabilization
Jon D. Robertus, Joseph Kraut, Richard A. Alden et al. · Biochemistry · 1972
377 citations
J.A. Gerlt, Paul G. Gassman · Journal of the American Chemical Society · 1993
EngineeringChemical AnalysisProton-coupled Electron Transfer+19
371 citations
J.A. Gerlt, Paul G. Gassman · Biochemistry · 1993
356 citations