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The gene regulatory network of mESC differentiation: a benchmark for reverse engineering methods

机译:mESC分化的基因调控网络:逆向工程方法的基准

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摘要

A large body of data have accumulated that characterize the gene regulatory network of stem cells. Yet, a comprehensive and integrative understanding of this complex network is lacking. Network reverse engineering methods that use transcriptome data to derive these networks may help to uncover the topology in an unbiased way. Many methods exist that use co-expression to reconstruct networks. However, it remains unclear how these methods perform in the context of stem cell differentiation, as most systematic assessments have been made for regulatory networks of unicellular organisms. Here, we report a systematic benchmark of different reverse engineering methods against functional data. We show that network pruning is critical for reconstruction performance. We also find that performance is similar for algorithms that use different co-expression measures, i.e. mutual information or correlation. In addition, different methods yield very different network topologies, highlighting the challenge of interpreting these resulting networks as a whole.This article is part of the theme issue ‘Designer human tissue: coming to a lab near you’.
机译:积累了大量表征干细胞基因调控网络的数据。然而,缺乏对该复杂网络的全面和综合的理解。使用转录组数据导出这些网络的网络逆向工程方法可能有助于以无偏见的方式揭示拓扑。存在许多使用共表达来重建网络的方法。然而,由于大多数针对单细胞生物调节网络的系统评估,尚不清楚这些方法在干细胞分化过程中如何发挥作用。在这里,我们报告了针对功能数据的不同逆向工程方法的系统基准。我们表明,网络修剪对于重建性能至关重要。我们还发现,对于使用不同共表达量度(即互信息或相关性)的算法,性能相似。此外,不同的方法会产生非常不同的网络拓扑,这突出说明了将这些最终网络整体进行解释所面临的挑战。本文是主题“设计人体组织:来到您附近的实验室”的一部分。

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