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Accurate analytic solution of chemical master equations for gene regulation networks in a single cell
期刊文章

Accurate analytic solution of chemical master equations for gene regulation networks in a single cell

冠榮 黃, David B. SaakianChin-Kun Hu
Physical Review E, 卷.97(1), 頁.012412
25/01/2018

摘要

Emergent biological functions from complex interac;Genomics;chemical master equations;Hamilton-Jacobi equation method;Finite-size corrections

Studying gene regulation networks in a single cell is an important, interesting, and hot research topic of molecular biology. Such process can be described by chemical master equations (CMEs). We propose a Hamilton-Jacobi equation method with finite-size corrections to solve such CMEs accurately at the intermediate region of switching, where switching rate is comparable to fast protein production rate. We applied this approach to a model of self-regulating proteins [H. Ge et al.Phys. Rev. Lett. 114, 078101 (2015)] and found that as a parameter related to inducer concentration increases the probability of protein production changes from unimodal to bimodal, then to unimodal, consistent with phenotype switching observed in a single cell.

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