首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Investigating transcriptional regulation: from analysis of complex networks to discovery of cis-regulatory elements.
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Investigating transcriptional regulation: from analysis of complex networks to discovery of cis-regulatory elements.

机译:研究转录调控:从复杂网络分析到发现顺式调控元件。

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摘要

Regulation of gene expression at the transcriptional level is a fundamental mechanism that is well conserved in all cellular systems. Due to advances in large-scale experimental analyses, we now have a wealth of information on gene regulation such as mRNA expression level across multiple conditions, genome-wide location data of transcription factors and data on transcription factor binding sites. This knowledge can be used to reconstruct transcriptional regulatory networks. Such networks are usually represented as directed graphs where regulatory interactions are depicted as directed edges from the transcription factor nodes to the target gene nodes. This abstract representation allows us to apply graph theory to study transcriptional regulation at global and local levels, to predict regulatory motifs and regulatory modules such as regulons and to compare the regulatory network of different genomes. Here we review some of the available computational methodologies for studying transcriptional regulatory networks as well as their interpretation.
机译:在转录水平上调节基因表达是在所有细胞系统中都高度保守的基本机制。由于大规模实验分析的进展,我们现在获得了有关基因调控的大量信息,例如多种条件下的mRNA表达水平,转录因子在全基因组范围内的位置数据以及转录因子结合位点的数据。该知识可用于重建转录调控网络。这样的网络通常表示为有向图,其中调节相互作用描述为从转录因子节点到靶基因节点的有向边缘。这种抽象表示使我们能够应用图论研究全局和局部水平的转录调控,预测调控基序和调控模块(例如调节子)并比较不同基因组的调控网络。在这里,我们回顾一些研究转录调控网络及其解释的可用计算方法。

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