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miRNAs confer phenotypic robustness to gene networks by suppressing biological noise

机译:miRNA通过抑制生物噪声赋予基因网络表型鲁棒性

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摘要

miRNAs are small non-coding RNAs able to modulate target gene expression. It has been postulated that miRNAs confer robustness to biological processes, but clear experimental evidence is still missing. Here, using a synthetic biological approach, we demonstrate that microRNAs provide phenotypic robustness to transcriptional regulatory networks by buffering fluctuations in protein levels. We construct a network motif in mammalian cells exhibiting a ‘toggle-switch’ phenotype in which two alternative protein expression levels define its ON and OFF states. The motif consists of an inducible transcription factor that self-regulates its own transcription and that of a miRNA against the transcription factor itself. We confirm, using mathematical modelling and experimental approaches, that the microRNA confers robustness to the toggle-switch by enabling the cell to maintain and transmit its state. When absent, a dramatic increase in protein noise level occurs, causing the cell to randomly switch between the two states.
机译:miRNA是能够调节靶基因表达的小型非编码RNA。据推测,miRNA赋予生物过程鲁棒性,但仍缺乏明确的实验证据。在这里,使用合成的生物学方法,我们证明了microRNA通过缓冲蛋白质水平的波动为转录调控网络提供表型鲁棒性。我们在表现出“切换开关”表型的哺乳动物细胞中构建了一个网络基序,其中两个替代蛋白表达水平定义了它的开和关状态。该基序由可诱导的转录因子组成,该因子可自我调节自身的转录,而miRNA则可针对转录因子本身进行调节。我们使用数学建模和实验方法证实,microRNA通过使细胞保持并传递其状态而赋予了拨动开关鲁棒性。如果不存在,蛋白质噪声水平会急剧增加,从而导致细胞在两种状态之间随机切换。

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