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A Software Tool to Model Genetic Regulatory Networks. Applications to the Modeling of Threshold Phenomena and of Spatial Patterning in Drosophila

机译:用于对遗传监管网络进行建模的软件工具。在果蝇的阈值现象建模和空间模式中的应用

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摘要

We present a general methodology in order to build mathematical models of genetic regulatory networks. This approach is based on the mass action law and on the Jacob and Monod operon model. The mathematical models are built symbolically by the Mathematica software package GeneticNetworks. This package accepts as input the interaction graphs of the transcriptional activators and repressors of a biological process and, as output, gives the mathematical model in the form of a system of ordinary differential equations. All the relevant biological parameters are chosen automatically by the software. Within this framework, we show that concentration dependent threshold effects in biology emerge from the catalytic properties of genes and its associated conservation laws. We apply this methodology to the segment patterning in Drosophila early development and we calibrate the genetic transcriptional network responsible for the patterning of the gap gene proteins Hunchback and Knirps, along the antero-posterior axis of the Drosophila embryo. In this approach, the zygotically produced proteins Hunchback and Knirps do not diffuse along the antero-posterior axis of the embryo of Drosophila, developing a spatial pattern due to concentration dependent thresholds. This shows that patterning at the gap genes stage can be explained by the concentration gradients along the embryo of the transcriptional regulators.
机译:我们提出了一种通用的方法,以建立遗传调控网络的数学模型。该方法基于质量作用定律以及Jacob和Monod操纵子模型。数学模型由Mathematica软件包GeneticNetworks象征性地建立。该程序包接受生物过程的转录激活因子和阻遏物的相互作用图作为输入,并作为输出以常微分方程组的形式给出数学模型。该软件会自动选择所有相关的生物学参数。在此框架内,我们表明生物学中浓度依赖性阈值效应来自基因的催化特性及其相关的保守规律。我们将此方法应用于果蝇早期发育中的节段模式,并校准负责果蝇胚胎前后轴的间隙基因蛋白驼峰和克尼普斯模式的遗传转录网络。在这种方法中,通过酶促产生的蛋白质Hunchback和Knirps不会沿着果蝇胚胎的前后轴扩散,由于浓度依赖性阈值而形成了空间模式。这表明间隙基因阶段的模式可以通过沿着转录调节子胚胎的浓度梯度来解释。

著录项

  • 作者

    Dilão, Rui; Muraro, Daniele;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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