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Origins of extrinsic variability in eukaryotic gene expression.

机译:真核基因表达中外在变异的起源。

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Variable gene expression within a clonal population of cells has been implicated in a number of important processes including mutation and evolution, determination of cell fates and the development of genetic disease. Recent studies have demonstrated that a significant component of expression variability arises from extrinsic factors thought to influence multiple genes simultaneously, yet the biological origins of this extrinsic variability have received little attention. Here we combine computational modelling with fluorescence data generated from multiple promoter-gene inserts in Saccharomyces cerevisiae to identify two major sources of extrinsic variability. One unavoidable source arising from the coupling of gene expression with population dynamics leads to a ubiquitous lower limit for expression variability. A second source, which is modelled as originating from a common upstream transcription factor, exemplifies how regulatory networks can convert noise in upstream regulator expression into extrinsic noise at the output of a target gene. Our results highlight the importance of the interplay of gene regulatory networks with population heterogeneity for understanding the origins of cellular diversity.
机译:细胞克隆种群中的可变基因表达与许多重要过程有关,包括突变和进化,确定细胞命运和遗传疾病的发展。最近的研究表明,表达变异性的重要组成部分来自被认为同时影响多个基因的外部因素,但是这种外部变异性的生物学起源却鲜有受到关注。在这里,我们将计算模型与酿酒酵母中多个启动子-基因插入片段产生的荧光数据结合起来,以识别外部变异的两个主要来源。基因表达与种群动态的耦合产生了一个不可避免的来源,导致了表达变异性普遍存在的下限。第二个来源被建模为源自常见的上游转录因子,它举例说明了调控网络如何将上游调控子表达中的噪声转化为靶基因输出端的外在噪声。我们的结果突出了基因调控网络与种群异质性相互作用对理解细胞多样性起源的重要性。

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