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基因表达。microRNA 对蛋白质表达噪声的调控。

Gene expression. MicroRNA control of protein expression noise.

机构信息

Integrative Research Institute for the Life Sciences and Institute for Theoretical Biology, Humboldt Universität, 10115 Berlin, Germany. Institute of Pathology, Charité-Universitätsmedizin, 10117 Berlin, Germany. Department of Physics, Massachusetts Institute of Technology (MIT), Cambridge MA 02139, USA.

Department of Electrical Engineering and Computer Science, MIT, Cambridge, MA 02139, USA.

出版信息

Science. 2015 Apr 3;348(6230):128-32. doi: 10.1126/science.aaa1738.

Abstract

MicroRNAs (miRNAs) repress the expression of many genes in metazoans by accelerating messenger RNA degradation and inhibiting translation, thereby reducing the level of protein. However, miRNAs only slightly reduce the mean expression of most targeted proteins, leading to speculation about their role in the variability, or noise, of protein expression. We used mathematical modeling and single-cell reporter assays to show that miRNAs, in conjunction with increased transcription, decrease protein expression noise for lowly expressed genes but increase noise for highly expressed genes. Genes that are regulated by multiple miRNAs show more-pronounced noise reduction. We estimate that hundreds of (lowly expressed) genes in mouse embryonic stem cells have reduced noise due to substantial miRNA regulation. Our findings suggest that miRNAs confer precision to protein expression and thus offer plausible explanations for the commonly observed combinatorial targeting of endogenous genes by multiple miRNAs, as well as the preferential targeting of lowly expressed genes.

摘要

微小 RNA(miRNA)通过加速信使 RNA 降解和抑制翻译来抑制后生动物中许多基因的表达,从而降低蛋白质水平。然而,miRNA 仅略微降低大多数靶向蛋白的平均表达,这导致人们推测它们在蛋白质表达的可变性或噪声中起作用。我们使用数学建模和单细胞报告基因检测来表明,miRNA 与转录增加一起,降低了低表达基因的蛋白质表达噪声,但增加了高表达基因的噪声。受多个 miRNA 调控的基因显示出更明显的噪声降低。我们估计,在小鼠胚胎干细胞中,由于大量 miRNA 的调控,数百个(低表达)基因的噪声降低了。我们的发现表明,miRNA 赋予蛋白质表达精度,从而为常见的多个 miRNA 对内源性基因的组合靶向以及对低表达基因的优先靶向提供了合理的解释。

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