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Sub-cellular mRNA localization modulates the regulation of gene expression by small RNAs in bacteria

机译:子细胞mRNA定位调节细菌中小RNA的基因表达调节

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摘要

Small non-coding RNAs can exert significant regulatory activity on gene expression in bacteria. In recent years, substantial progress has been made in understanding bacterial gene expression by sRNAs. However, recent findings that demonstrate that families of mRNAs show non-trivial subcellular distributions raise the question of how localization may affect the regulatory activity of sRNAs. Here we address this question within a simple mathematical model. We show that the non-uniform spatial distributions of mRNA can alter the threshold-linear response that characterizes sRNAs that act stoichiometrically, and modulate the hierarchy among targets co-regulated by the same sRNA. We also identify conditions where the sub-cellular organization of cofactors in the sRNA pathway can induce spatial heterogeneity on sRNA targets. Our results suggest that under certain conditions, interpretation and modeling of natural and synthetic gene regulatory circuits need to take into account the spatial organization of the transcripts of participating genes.
机译:小的非编码RNA可以对细菌中的基因表达发挥重要的调节作用。近年来,在通过sRNAs了解细菌基因表达方面取得了实质性进展。然而,最近的发现表明,mRNAs家族表现出非同寻常的亚细胞分布,这就提出了一个问题,即定位可能如何影响sRNAs的调节活性。在这里,我们用一个简单的数学模型来解决这个问题。我们发现,mRNA的非均匀空间分布可以改变以化学计量方式起作用的sRNA的阈值线性响应,并调节由同一sRNA共同调节的靶点之间的层次结构。我们还确定了sRNA途径中辅助因子的亚细胞组织可以诱导sRNA靶点的空间异质性的条件。我们的结果表明,在一定条件下,对自然和合成基因调节回路的解释和建模需要考虑参与基因转录本的空间组织。

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