基因表达调控建模的伽罗瓦场方法

Hosam A. Aleem, F. Mavituna, D. Green
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引用次数: 2

摘要

基因表达是细胞将DNA中的信息转化为功能的过程,通常由蛋白质执行。哪些基因会被表达,取决于许多因素一些是细胞内部的,另一些则来自细胞周围的环境。这可以被认为是一个逻辑功能规定基因表达,以响应不同的条件。除了连续模型之外,这种函数最常见的表述是使用布尔逻辑。这样做的主要缺点是将分析限制在二元值变量上,而二元值变量并不总是适当的近似值。我们提出了一种伽罗瓦域的多值逻辑建模方法,并利用Reed-Muller展开式表述了调节函数。给出了两个例子来说明这种方法的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Galois Field Approach to Modelling Gene Expression Regulation
Gene expression is the process by which the cell transforms the information in the DNA to functions, often carried out by proteins. Which genes will be expressed, depends on many factors some internal to the cell and others from the environment around it. This can be considered as a logic function prescribing gene expression in response to the different conditions. Apart from continuous models, the most common formulation of such a function is using Boolean logic. This has the major drawback of restricting analysis to binary valued variable which are not always an appropriate approximation. We propose a multiple-valued logic modelling approach on a Galois field and formulate the regulatory function using the Reed-Muller expansion. Two examples are given that illustrate the application of this approach.
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