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Multistationarity, the basis of cell differentiation and memory. I. Structural conditions of multistationarity and other nontrivial behavior

机译:多平稳性,细胞分化和记忆的基础。 I.多平稳性和其他非平凡行为的结构条件

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摘要

A biological introduction serves to remind us that differentiation is an epigenetic process, that multistationarity can account for epigenetic differences, including those involved in cell differentiation, and that positive feedback circuits are a necessary condition for multistationarity and, by inference, for differentiation. The core of the paper is comprised of a formal description of feedback circuits and unions of disjoint circuits. We introduce the concepts of full-circuit (a circuit or union of disjoint circuits which involves all the variables of the system), and of ambiguous circuit (a circuit whose sign depends on the location in phase space). We describe the partition of phase space (a) according to the signs of the ambiguous circuits, and (b) according to the signs of the eigenvalues or their real part. We introduce a normalization of the system versus one of the circuits; in two variables, this permits an entirely general description in terms of a common diagram in the "circuit space." The paper ends with general statements concerning the requirements for multistationarity, stable periodicity, and deterministic chaos.
机译:生物学上的介绍提醒我们,分化是表观遗传的过程,多平稳性可以解释表观遗传的差异,包括那些参与细胞分化的差异,正反馈电路是多平稳性以及通过推理推断分化的必要条件。本文的核心包括对反馈电路和不连续电路的并集的形式描述。我们介绍了全电路(涉及系统所有变量的电路或不相交电路的并集)和模棱两可的电路(其符号取决于相空间中的位置的电路​​)的概念。我们描述相空间的划分(a)根据歧义电路的符号,(b)根据特征值或其实部的符号。我们介绍了系统相对于电路之一的标准化;在两个变量中,这允许根据“电路空间”中的公共图表进行全面的描述。本文以关于多平稳性,稳定周期和确定性混乱的要求的一般性声明结尾。

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