Single‐step unimolecular non‐first‐order enzyme deactivation kinetics
- 20 October 1987
- journal article
- research article
- Published by Wiley in Biotechnology & Bioengineering
- Vol. 30 (6) , 717-723
- https://doi.org/10.1002/bit.260300604
Abstract
A two-parameter deactivation model is proposed to describe the kinetics of activity stabilization for some enzymes. The single-step unimolecular mechanism exhibits non-first-order deactivation kinetics since the final enzyme state, E1 is not completely inactivated. The usefulness of the model is demonstrated by applying it to the inactivation of different enzymes. The influence of the concentration of active ester, ionic strength, and pH on the model parameters is examined during the inactivation of electric eel acetylcholinesterase.25 In general, inactivators would decrease the level of activity stabilization, α1, and increase the first-order inactivation rate constant, k1. The effect of protecting agents would be to increase α1 and to decrease k1.Keywords
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