Enzimatik Reaksiyonların Kimyasal Langevin-levy Denklemiyle Modellenmesi
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Altınkaya, Mustafa Aziz
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Green Open Access
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Abstract
Chemical Langevin Equation (CLE) describes a useful approximation in stochastic modeling of chemical reactions. CLE-based ?-leaping algoritm updates the quantities of every molecule in a reaction system with a period of ?, firing every reaction in the system so many times that the concentration of each molecule can be assumed to remain in the current concentration state. Substituting the Brownian motion in the CLE with a Levy flight, one might expect the CLE to converge more rapidly. This work shows that alpha (Levy)-stable increments can be used in ?-leaping, demonstrating it with the example of a detailed kinetic model describing the enzymatic transgalactosylation reaction during lactulose hydrolysis. © 2012 IEEE.
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Keywords
Chemical Langevin equation; Current concentration; Detailed kinetics; Enzymatic reaction; Levy flights
Fields of Science
0106 biological sciences, 0103 physical sciences, 01 natural sciences
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