Ramos A F, Innocentini G C P, Hornos J E M
Escola de Artes, Ciências e Humanidades, Universidade de São Paulo, São Paulo, SP, Brazil.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Jun;83(6 Pt 1):062902. doi: 10.1103/PhysRevE.83.062902. Epub 2011 Jun 27.
The exact time-dependent solution for the stochastic equations governing the behavior of a binary self-regulating gene is presented. Using the generating function technique to rephrase the master equations in terms of partial differential equations, we show that the model is totally integrable and the analytical solutions are the celebrated confluent Heun functions. Self-regulation plays a major role in the control of gene expression, and it is remarkable that such a microscopic model is completely integrable in terms of well-known complex functions.
给出了描述二元自调节基因行为的随机方程的精确时间相关解。利用生成函数技术将主方程改写为偏微分方程,我们表明该模型是完全可积的,其解析解是著名的合流超几何函数。自调节在基因表达控制中起着主要作用,值得注意的是,这样一个微观模型在著名的复变函数方面是完全可积的。