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Sustained-input switches for transcription factors and microRNAs are central building blocks of eukaryotic gene circuits

机译:转录因子和microRNA的持续输入开关是真核基因电路的重要组成部分

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WaRSwap is a randomization algorithm that for the first time provides a practical network motif discovery method for large multi-layer networks, for example those that include transcription factors, microRNAs, and non-regulatory protein coding genes.The algorithm is applicable to systems with tens of thousands of genes, while accounting for critical aspects of biological networks, including self-loops, large hubs, and target rearrangements. We validate WaRSwap on a newly inferred regulatory networkfrom Arabidopsis thaliana, and compare outcomes on published Drosophila and human networks. Specifically, sustained input switches are among the few over-represented circuits across this diverse set of eukaryotes.
机译:WaRSwap是一种随机化算法,首次为大型多层网络(例如包含转录因子,microRNA和非调控蛋白编码基因的网络)提供了一种实用的网络主题发现方法。该算法适用于具有数十个序列的系统数以千计的基因,同时考虑了生物网络的关键方面,包括自环,大型集线器和靶标重排。我们在拟南芥的新推断调控网络上验证了WaRSwap,并比较了果蝇和人类网络上的结果。具体来说,持续输入开关是这套不同的真核生物中为数不多的过分代表的电路之一。

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