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蛋白质合成中的随机错误会激活小鼠中一种与年龄相关的肌肉萎缩程序。

Random errors in protein synthesis activate an age-dependent program of muscle atrophy in mice.

机构信息

Institut für Medizinische Mikrobiologie, Universität Zürich, Zürich, Switzerland.

Anatomisches Institut, Universität Zürich, Zürich, Switzerland.

出版信息

Commun Biol. 2021 Jun 8;4(1):703. doi: 10.1038/s42003-021-02204-z.

Abstract

Random errors in protein synthesis are prevalent and ubiquitous, yet their effect on organismal health has remained enigmatic for over five decades. Here, we studied whether mice carrying the ribosomal ambiguity (ram) mutation Rps2-A226Y, recently shown to increase the inborn error rate of mammalian translation, if at all viable, present any specific, possibly aging-related, phenotype. We introduced Rps2-A226Y using a Cre/loxP strategy. Resulting transgenic mice were mosaic and showed a muscle-related phenotype with reduced grip strength. Analysis of gene expression in skeletal muscle using RNA-Seq revealed transcriptomic changes occurring in an age-dependent manner, involving an interplay of PGC1α, FOXO3, mTOR, and glucocorticoids as key signaling pathways, and finally resulting in activation of a muscle atrophy program. Our results highlight the relevance of translation accuracy, and show how disturbances thereof may contribute to age-related pathologies.

摘要

蛋白质合成中的随机错误普遍存在,但它们对生物体健康的影响在五十多年来一直是个谜。在这里,我们研究了携带核糖体模糊(ram)突变 Rps2-A226Y 的小鼠是否具有任何特定的、可能与衰老相关的表型,该突变最近被证明会增加哺乳动物翻译的先天性错误率。我们使用 Cre/loxP 策略引入 Rps2-A226Y。由此产生的转基因小鼠是嵌合体,表现出肌肉相关表型,握力降低。使用 RNA-Seq 对骨骼肌中的基因表达进行分析显示,转录组变化以年龄依赖性的方式发生,涉及 PGC1α、FOXO3、mTOR 和糖皮质激素等关键信号通路的相互作用,最终导致肌肉萎缩程序的激活。我们的结果强调了翻译准确性的相关性,并展示了其紊乱如何导致与年龄相关的病理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8951/8187632/c52c64da5081/42003_2021_2204_Fig1_HTML.jpg

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