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从生长到老年骨骼肌中微小RNA和长链非编码RNA的调控显示出臀肌肥大基因座的显著失调。

MicroRNA and Long Non-coding RNA Regulation in Skeletal Muscle From Growth to Old Age Shows Striking Dysregulation of the Callipyge Locus.

作者信息

Mikovic Jasmine, Sadler Kate, Butchart Lauren, Voisin Sarah, Gerlinger-Romero Frederico, Della Gatta Paul, Grounds Miranda D, Lamon Séverine

机构信息

School of Exercise and Nutrition Sciences, Institute for Physical Activity and Nutrition, Deakin University, Geelong, VIC, Australia.

School of Human Sciences, The University of Western Australia, Perth, WA, Australia.

出版信息

Front Genet. 2018 Nov 16;9:548. doi: 10.3389/fgene.2018.00548. eCollection 2018.

Abstract

MicroRNAs (miRNAs) undergo high levels of regulation in skeletal muscle development and control skeletal muscle mass, function and metabolism over the lifespan. More recently, the role of long non-coding RNAs (lncRNAs) in skeletal muscle regulation has started to emerge. Following up on our recent study describing the expression pattern and putative roles of 768 miRNAs in the quadriceps muscle of mice at early life stages, we used a high-throughput miRNA qPCR-based array to assess the expression of the same miRNAs in 28-month old male mouse quadriceps muscle. In addition, we report the expression patterns of lncRNAs playing a putative role in muscle development and adaptation from growth to old age. Twelve miRNAs were significantly downregulated in 28-month old muscle when compared with 12-week old muscle. Ten of them clustered at the locus, known as 'Callipyge,' which is associated with muscle development and hypertrophy. This collective downregulation was paralleled by decreases in the expression levels of the maternally expressed imprinted LncRNA coding genes and stemming from the same chromosomal region. In contrast, the paternally expressed imprinted locus members , and and the muscle related lncRNAs , and underwent significant changes during growth, but their expression levels were not altered past the age of 12 weeks, suggesting roles limited to hyperplasia and early hypertrophy. In conclusion, collective muscle miRNA expression gradually decreases over the lifespan and a cluster of miRNAs and maternally expressed lncRNAs stemming from the Callipyge locus is significantly dysregulated in aging muscle. The locus therefore represents a potential new mechanism for age-related muscle decline.

摘要

微小RNA(miRNA)在骨骼肌发育过程中受到高度调控,并在整个生命周期中控制骨骼肌的质量、功能和代谢。最近,长链非编码RNA(lncRNA)在骨骼肌调控中的作用开始显现。继我们最近一项描述768种miRNA在小鼠生命早期阶段股四头肌中的表达模式及假定作用的研究之后,我们使用基于高通量miRNA qPCR的芯片来评估相同miRNA在28月龄雄性小鼠股四头肌中的表达。此外,我们报告了lncRNA在肌肉从生长到衰老的发育和适应过程中发挥假定作用的表达模式。与12周龄肌肉相比,28月龄肌肉中有12种miRNA显著下调。其中10种聚集在被称为“臀肌肥大”的位点,该位点与肌肉发育和肥大相关。这种集体下调与源自同一染色体区域的母系表达的印记LncRNA编码基因和的表达水平降低相平行。相比之下,父系表达的印记位点成员、以及与肌肉相关的lncRNA、在生长过程中发生了显著变化,但在12周龄后其表达水平未改变,表明其作用仅限于增生和早期肥大。总之,随着生命周期的延长,肌肉miRNA的集体表达逐渐降低,并且源自臀肌肥大位点的一组miRNA和母系表达的lncRNA在衰老肌肉中显著失调。因此,该位点代表了与年龄相关的肌肉衰退的一种潜在新机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec52/6250799/3b582d565922/fgene-09-00548-g001.jpg

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