贝叶斯信息解码由一个细胞

Tetsuya J. Kobayashi
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引用次数: 0

摘要

外部信号的信息处理是细胞信号转导通路和遗传调控网络的基本任务。由于细胞内外存在固有的和外在的噪声,这种通路必须对破坏信号中所含信息的噪声具有鲁棒性。尽管这些途径的分子细节已经通过实验得到了澄清,但我们仍然不知道什么样的细胞内反应与对噪声的鲁棒信息处理有关。在这项工作中,我首先利用贝叶斯解码理论推导了一个最优的信息解码动力学。然后,我证明了这种最佳解码动力学可以通过自磷酸化自脱磷循环(aPadP循环)来实现。从分岔的角度揭示了aPadP环的动力学性质。此外,我将研究包括aPadP周期在内的几种细胞间反应对信息解码的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bayesian information decoding by a cell
Information processing of externally introduced signals is a basic task of signal transduction pathways and genetic regulatory networks in a cell. Because of the presence of intrinsic and extrinsic noise inside and outside of a cell, such a pathway has to be robust to noise that undermines information contained in the signals. Even though molecular details of the pathways have been clarified experimentally, we still do not know what kind of intracellular reactions are relevant to the robust information processing to noise. In this work, I firstly derive an optimal information decoding dynamics by employing the theory of Bayesian decoding. Then, I demonstrate that this optimal decoding kinetics can be implemented by an auto-phosphorlation auto-dephosphorlation cycle (aPadP cycle). Dynamical properties of the aPadP cycle will also be revealed from the bifurcation viewpoint. Moreover, I will investigate efficiency of information decoding by several intercellular reactions including the aPadP cycle.
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