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Michaelis-Menten kinetics at high enzyme concentrations

✍ Scribed by A.R. Tzafriri


Book ID
104271856
Publisher
Springer
Year
2003
Tongue
English
Weight
266 KB
Volume
65
Category
Article
ISSN
1522-9602

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✦ Synopsis


The total quasi-steady state approximation (tQSSA) for the irreversible Michaelis-Menten scheme is derived in a consistent manner. It is found that self-consistency of the initial transient guarantees the uniform validity of the tQSSA, but does not guarantee the validity of the linearization in the original derivation of Borghans et al. (1996, Bull. Math. Biol., 58, 43-63). Moreover, the present rederivation yielded the noteworthy result that the tQSSA is at least roughly valid for any substrate and enzyme concentrations. This reinforces and extends the original assertion that the parameter domain for which the tQSSA is valid overlaps the domain of validity of the standard quasi-steady state approximation and includes the limit of high enzyme concentrations. The criteria for the uniform validity of the original (linearized) tQSSA are corrected, and are used to derive approximate solutions that are uniformly valid in time. These approximations overlap and extend the domains of validity of the standard and reverse quasi-steady state approximations.


πŸ“œ SIMILAR VOLUMES


Enzyme Kinetics at High Enzyme Concentra
✍ S. Schnell; P.K. Maini πŸ“‚ Article πŸ“… 2000 πŸ› Springer 🌐 English βš– 222 KB

We re-visit previous analyses of the classical Michaelis-Menten substrate-enzyme reaction and, with the aid of the reverse quasi-steady-state assumption, we challenge the approximation d[C]/dt β‰ˆ 0 for the basic enzyme reaction at high enzyme concentration. For the first time, an approximate solution