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Computational Methodologies for Analyzing, Modeling and Controlling Gene Regulatory Networks:

机译:分析,建模和控制基因调控网络的计算方法:

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Molecular biology focuses on genes and their interactions at the transcription, regulation and protein level. Finding genes that cause certain behaviors can make therapeutic interventions more effective. Although biological tools can extract the genes and perform some analyses, without the help of computational methods, deep insight of the genetic function and its effects will not occur. On the other hand, complex systems can be modeled by networks, introducing the main data as nodes and the links in-between as the transactions occurring within the network. Gene regulatory networks are examples that are modeled and analyzed in order to gain insight of their exact functions. Since a cell's specific functionality is greatly determined by the genes it expresses, translation or the act of converting mRNA to proteins is highly regulated by the control network that directs cellular activities. This paper briefly reviews the most important computational methods for analyzing, modeling and controlling the gene regulatory networks.
机译:分子生物学专注于基因及其在转录,调控和蛋白质水平上的相互作用。寻找引起某些行为的基因可以使治疗干预更加有效。尽管生物学工具可以提取基因并进行一些分析,但无需计算方法的帮助,就不会对遗传功能及其作用产生深刻的见解。另一方面,复杂的系统可以通过网络建模,将主要数据作为节点引入,并将其之间的链接作为网络内发生的事务进行引入。基因调控网络是经过建模和分析的示例,旨在深入了解其确切功能。由于细胞的特定功能在很大程度上取决于其表达的基因,因此指导细胞活动的控制网络会高度调节翻译或将mRNA转化为蛋白质的行为。本文简要回顾了用于分析,建模和控制基因调控网络的最重要的计算方法。

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