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首页> 外文期刊>BioMed research international >A Systems’ Biology Approach to Study MicroRNA-Mediated Gene Regulatory Networks
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A Systems’ Biology Approach to Study MicroRNA-Mediated Gene Regulatory Networks

机译:系统生物学方法研究MicroRNA介导的基因调控网络

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MicroRNAs (miRNAs) are potent effectors in gene regulatory networks where aberrant miRNA expression can contribute to human diseases such as cancer. For a better understanding of the regulatory role of miRNAs in coordinating gene expression, we here present a systems biology approach combining data-driven modeling and model-driven experiments. Such an approach is characterized by an iterative process, including biological data acquisition and integration, network construction, mathematical modeling and experimental validation. To demonstrate the application of this approach, we adopt it to investigate mechanisms of collective repression on p21 by multiple miRNAs. We first construct a p21 regulatory network based on data from the literature and further expand it using algorithms that predict molecular interactions. Based on the network structure, a detailed mechanistic model is established and its parameter values are determined using data. Finally, the calibrated model is used to study the effect of different miRNA expression profiles and cooperative target regulation on p21 expression levels in different biological contexts.
机译:MicroRNA(miRNA)是基因调控网络中的强大效应子,其中异常的miRNA表达可能会导致人类疾病(例如癌症)。为了更好地理解miRNA在协调基因表达中的调控作用,我们在此提出一种结合数据驱动的建模和模型驱动的实验的系统生物学方法。这种方法的特点是迭代过程,包括生物数据获取和集成,网络构建,数学建模和实验验证。为了证明这种方法的应用,我们采用它来研究多种miRNA对p21的集体抑制机制。我们首先根据文献数据构建p21调控网络,然后使用预测分子相互作用的算法对其进行进一步扩展。基于网络结构,建立了详细的机械模型,并使用数据确定其参数值。最后,使用校准的模型研究不同生物学环境中不同miRNA表达谱和协同靶标调控对p21表达水平的影响。

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