Chu Dominique F, Zabet Nicolae Radu, Hone Andrew N W
School of Computing, University of Kent, CT27NF Canterbury, UK.
Biosystems. 2011 May-Jun;104(2-3):99-108. doi: 10.1016/j.biosystems.2011.01.006. Epub 2011 Jan 21.
Gene networks can often be interpreted as computational circuits. This article investigates the computational properties of gene regulatory networks defined in terms of the speed and the accuracy of the output of a gene network. It will be shown that there is no single optimal set of parameters, but instead, there is a trade-off between speed and accuracy. Using the trade-off it will also be shown how systems with various parameters can be ranked with respect to their computational efficiency. Numerical analysis suggests that the trade-off can be improved when the output gene is repressing itself, even though the accuracy or the speed of the auto-regulated system may be worse than the unregulated system.
基因网络通常可以被解释为计算电路。本文从基因网络输出的速度和准确性方面研究了基因调控网络的计算特性。结果表明不存在单一的最优参数集,而是在速度和准确性之间存在权衡。利用这种权衡还将展示如何根据计算效率对具有不同参数的系统进行排序。数值分析表明,即使自调控系统的准确性或速度可能比未调控系统差,但当输出基因对自身具有抑制作用时,这种权衡可以得到改善。