Influence of enzyme concentration on the Michaelis-Menten constant: A new hypothesis for isolated cases

Published: 18 May 2026| Version 7 | DOI: 10.17632/78864km3bx.7
Contributor:
Yassin Fadel

Description

The classical Michaelis-Menten equation assumes that the Michaelis constant (Km) is independent of enzyme concentration. However, this study presents a novel Hypothesis suggesting that Km increases with enzyme concentration due to electrostatic and steric effects influencing substrate binding. By analyzing kinetic data and mathematical modeling, we demonstrate that traditional approximations such as the Quasi-Steady-State Assumption (QSSA) and Reactant Stationary Approximation (RSA) may not fully describe enzymatic behavior under varying enzyme concentrations. Our findings suggest a re-evaluation in enzyme kinetics, with potential applications in metabolic regulation and drug development. The implications extend to the design of enzyme inhibitors, particularly in therapeutic strategies targeting metabolic pathways in diseases such as cancer and autoimmune disorders. This new perspective challenges certain conventional assumptions in enzymology and provides new perspectives on enzyme-substrate interactions.

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Institutions

  • Universitatea Alexandru Ioan Cuza Facultatea de Chimie
    Iasi

Categories

Electrochemistry, Physical Chemistry, Enzyme Kinetics, Chemical Reaction Kinetics, Enzyme

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