نتایج جستجو برای: menten equation

تعداد نتایج: 232097  

Journal: :IET systems biology 2011
K R Sanft D T Gillespie L R Petzold

Michaelis-Menten kinetics are commonly used to represent enzyme-catalysed reactions in biochemical models. The Michaelis-Menten approximation has been thoroughly studied in the context of traditional differential equation models. The presence of small concentrations in biochemical systems, however, encourages the conversion to a discrete stochastic representation. It is shown that the Michaelis...

2006
Brian P English Wei Min Antoine M van Oijen Kang Taek Lee Guobin Luo Hongye Sun Binny J Cherayil S C Kou Sunney Xie

Enzymes are biological catalysts vital to life processes and have attracted century-long investigation. The classic Michaelis-Menten mechanism provides a highly satisfactory description of catalytic activities for large ensembles of enzyme molecules. Here we tested the Michaelis-Menten equation at the single-molecule level. We monitored long time traces of enzymatic turnovers for individual b-g...

2001
A. I. SAKHANENKO

where K and V are some unknowns. For example, in study of chemical reactions, equation (1.1) is known as the Michaelis–Menten equation which describes the theoretical interrelation between the speed of reaction v(s) and the amount of reagent s. In this case the parameter V has the meaning of a maximally possible speed of reaction and the parameter K is the value of s for which the speed of reac...

2015
Otto Pulkkinen Ralf Metzler

Many chemical reactions in biological cells occur at very low concentrations of constituent molecules. Thus, transcriptional gene-regulation is often controlled by poorly expressed transcription-factors, such as E.coli lac repressor with few tens of copies. Here we study the effects of inherent concentration fluctuations of substrate-molecules on the seminal Michaelis-Menten scheme of biochemic...

2013
Michael Schleeger Joachim Heberle Sergej Kakorin

Conventional analysis of enzyme-catalyzed reactions uses a set of initial rates of product formation or substrate decay at a variety of substrate concentrations. Alternatively to the conventional methods, attempts have been made to use an integrated Michaelis-Menten equation to assess the values of the Michaelis-Menten KM and turnover kcat constants directly from a single time course of an enzy...

Journal: :Journal of Pharmacokinetics and Biopharmaceutics 1982

Journal: :Physical review letters 2011
Soma Saha Somdeb Ghose R Adhikari Arti Dua

Recent fluorescence spectroscopy measurements of single-enzyme kinetics have shown that enzymatic turnovers form a renewal stochastic process in which the inverse of the mean waiting time between turnovers follows the Michaelis-Menten equation. We study enzyme kinetics at physiologically relevant mesoscopic concentrations using a master equation. From the exact solution of the master equation w...

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