Noise Characteristics of Molecular Oscillations in Simple Genetic Oscillatory Systems

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초록

We study the noise characteristics of stochastic oscillations in protein number dynamics of simple genetic oscillatory systems. Using the three-component negative feedback transcription regulatory system called the repressilator as a prototypical example, we quantify the degree of fluctuations in oscillation periods and amplitudes, as well as the noise propagation along the regulatory cascade in the stable oscillation regime via dynamic Monte Carlo simulations. For the single protein-species level, the fluctuation in the oscillation amplitudes is found to be larger than that of the oscillation periods, the distributions of which are reasonably described by the Weibull distribution and the Gaussian tail, respectively. Correlations between successive periods and between successive amplitudes, respectively, are measured to assess the noise propagation properties, which are found to decay faster for the amplitude than for the period. The local fluctuation property is also studied.

키워드

Stochastic oscillationGenetic networkDynamic Monte CarloNoise propagationNEGATIVE FEEDBACK LOOPSEXPRESSIONSIMULATIONCIRCUITSDYNAMICSNETWORKROBUST
제목
Noise Characteristics of Molecular Oscillations in Simple Genetic Oscillatory Systems
저자
Min, ByungjoonGoh, K-IKim, I. -M.
DOI
10.3938/jkps.56.911
발행일
2010-03
유형
Article
저널명
Journal of the Korean Physical Society
56
3
페이지
911 ~ 917