A 13C Nuclear‐Magnetic‐Resonance Study of CO2‐HCO3− Exchange Catalyzed by Human Carbonic Anhydrase C at Chemical Equilibrium
Open Access
- 1 January 1979
- journal article
- research article
- Published by Wiley in European Journal of Biochemistry
- Vol. 93 (2) , 409-417
- https://doi.org/10.1111/j.1432-1033.1979.tb12837.x
Abstract
The effects of human carbonic anhydrase C on the 13C nuclear magnetic resonance spectra of equilibrium mixtures of 13CO2 and NaH13CO3 were measured at 67.89 MHz. Enzyme-catalyzed CO2-HCO3− exchange rates were estimated from the linewidths of the resonances. The results show that: (a) the maximal exchange rates are larger than the maximal turnover rates; (b) the exchange is equally rapid with 1H2O or with 2H2O as solvents; (c) the exchange is equally rapid in the presence or in the absence of added buffers; (d) the apparent substrate binding is weaker than predicted if steady-state Km values are assumed to represent substrate dissociation constants. The main conclusion concerning the catalytic mechanism of the enzyme is that the proton-transfer processes which limit turnover rates in the steady state are not directly involved in CO2-HCO3− exchange. In addition, the results suggest that CO2-HCO3− interconversion takes place by a nucleophilic mechanism, such as a reversible reaction of zinc-coordinated OH− with CO2.This publication has 31 references indexed in Scilit:
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