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基因调控网络动力学建模基础:多层次视角综述

Foundations for modeling the dynamics of gene regulatory networks: a multilevel-perspective review.

作者信息

Sanchez-Osorio Ismael, Ramos Fernando, Mayorga Pedro, Dantan Edgar

机构信息

Department of Computer Science, Monterrey Institute of Technology and Higher Education Campus Cuernavaca, Autopista del Sol km 104, Xochitepec, Morelos 62790, Mexico.

出版信息

J Bioinform Comput Biol. 2014 Feb;12(1):1330003. doi: 10.1142/S0219720013300037. Epub 2013 Dec 20.

Abstract

A promising alternative for unraveling the principles under which the dynamic interactions among genes lead to cellular phenotypes relies on mathematical and computational models at different levels of abstraction, from the molecular level of protein-DNA interactions to the system level of functional relationships among genes. This review article presents, under a bottom-up perspective, a hierarchy of approaches to modeling gene regulatory network dynamics, from microscopic descriptions at the single-molecule level in the spatial context of an individual cell to macroscopic models providing phenomenological descriptions at the population-average level. The reviewed modeling approaches include Molecular Dynamics, Particle-Based Brownian Dynamics, the Master Equation approach, Ordinary Differential Equations, and the Boolean logic abstraction. Each of these frameworks is motivated by a particular biological context and the nature of the insight being pursued. The setting of gene network dynamic models from such frameworks involves assumptions and mathematical artifacts often ignored by the non-specialist. This article aims at providing an entry point for biologists new to the field and computer scientists not acquainted with some recent biophysically-inspired models of gene regulation. The connections promoting intuition between different abstraction levels and the role that approximations play in the modeling process are highlighted throughout the paper.

摘要

揭示基因间动态相互作用导致细胞表型的原理的一种有前景的替代方法依赖于不同抽象层次的数学和计算模型,从蛋白质 - DNA相互作用的分子层面到基因间功能关系的系统层面。本文从自下而上的角度,展示了一个用于建模基因调控网络动态的方法层次结构,从单个细胞空间背景下单分子水平的微观描述到在群体平均水平提供唯象描述的宏观模型。所综述的建模方法包括分子动力学、基于粒子的布朗动力学、主方程方法、常微分方程以及布尔逻辑抽象。这些框架中的每一个都受到特定生物学背景和所追求的见解的性质的驱动。从这些框架设置基因网络动态模型涉及一些非专业人员经常忽略的假设和数学技巧。本文旨在为该领域的新手生物学家以及不熟悉一些最近受生物物理启发的基因调控模型的计算机科学家提供一个切入点。整篇文章都强调了促进不同抽象层次之间直觉的联系以及近似在建模过程中所起的作用。

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