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解析肌肉衰老的转录组交响曲:RNA测序揭示衰老和热量限制对大鼠肌肉影响的关键途径和枢纽基因

Unravelling the transcriptomic symphony of muscle ageing: key pathways and hub genes altered by ageing and caloric restriction in rat muscle revealed by RNA sequencing.

作者信息

Altab Gulam, Merry Brian J, Beckett Charles W, Raina Priyanka, Lopes Inês, Goljanek-Whysall Katarzyna, de Magalhães João Pedro

机构信息

Integrative Genomics of Ageing Group, Institute of Ageing and Chronic Disease, University of Liverpool, Liverpool, L7 8TX, UK.

Institute of Integrative Biology, University of Liverpool, Liverpool, L69 3BX, UK.

出版信息

BMC Genomics. 2025 Jan 13;26(1):29. doi: 10.1186/s12864-024-11051-1.

Abstract

Age-related muscle wasting, sarcopenia is an extensive loss of muscle mass and strength with age and a major cause of disability and accidents in the elderly. Mechanisms purported to be involved in muscle ageing and sarcopenia are numerous but poorly understood, necessitating deeper study. Hence, we employed high-throughput RNA sequencing to survey the global changes in protein-coding gene expression occurring in skeletal muscle with age. Caloric restriction (CR) is a known prophylactic intervention against sarcopenia. Therefore, total RNA was isolated from the muscle tissue of both rats fed ad libitum and CR rats. RNA-seq data were subjected to Gene Ontology, pathway, co-expression, and interaction network analyses. This revealed the functional pathways most activated by both ageing and CR, as well as the key "hub" proteins involved in their activation.RNA-seq revealed 442 protein-coding genes to be upregulated and 377 to be downregulated in aged muscle, compared to young muscle. Upregulated genes were commonly involved in protein folding and immune responses; meanwhile, downregulated genes were often related to developmental biology. CR was found to suppress 69.7% and rescue 57.8% of the genes found to be upregulated and downregulated in aged muscle, respectively. In addition, CR uniquely upregulated 291 and downregulated 304 protein-coding genes. Hub genes implicated in both ageing and CR included Gc, Plg, Irf7, Ifit3, Usp18, Rsad2, Blm and RT1-A2, whilst those exclusively implicated in CR responses included Alb, Apoa1, Ambp, F2, Apoh, Orm1, Mx1, Oasl2 and Rtp4. Hub genes involved in ageing but unaffected by CR included Fgg, Fga, Fgb and Serpinc1. In conclusion, this comprehensive RNA sequencing study highlights gene expression patterns, hub genes and signalling pathways most affected by ageing in skeletal muscle. This data may provide the initial evidence for several targets for potential future therapeutic interventions against sarcopenia.

摘要

与年龄相关的肌肉萎缩,即肌肉减少症,是随着年龄增长肌肉质量和力量的广泛丧失,也是老年人残疾和发生事故的主要原因。据称,参与肌肉衰老和肌肉减少症的机制众多,但人们对此了解甚少,因此需要更深入的研究。因此,我们采用高通量RNA测序技术来研究骨骼肌中随年龄增长而发生的蛋白质编码基因表达的整体变化。热量限制(CR)是一种已知的预防肌肉减少症的干预措施。因此,从自由采食大鼠和热量限制大鼠的肌肉组织中分离出总RNA。对RNA测序数据进行基因本体论、通路、共表达和相互作用网络分析。这揭示了衰老和热量限制最激活的功能通路,以及参与其激活的关键“枢纽”蛋白。RNA测序显示,与年轻肌肉相比,老年肌肉中有442个蛋白质编码基因上调,377个下调。上调的基因通常参与蛋白质折叠和免疫反应;同时,下调的基因往往与发育生物学有关。结果发现,热量限制分别抑制了老年肌肉中上调基因的69.7%和挽救了下调基因的57.8%。此外,热量限制独特地上调了291个和下调了304个蛋白质编码基因。与衰老和热量限制都有关的枢纽基因包括Gc、Plg、Irf7、Ifit3、Usp18、Rsad2、Blm和RT1 - A2,而专门与热量限制反应有关的枢纽基因包括Alb、Apoa1、Ambp、F2、Apoh、Orm1、Mx1、Oasl2和Rtp4。与衰老有关但不受热量限制影响的枢纽基因包括Fgg、Fga、Fgb和Serpinc1。总之,这项全面的RNA测序研究突出了骨骼肌中受衰老影响最大的基因表达模式、枢纽基因和信号通路。这些数据可能为未来针对肌肉减少症的潜在治疗干预的几个靶点提供初步证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c457/11727704/fff056b836e6/12864_2024_11051_Fig1_HTML.jpg

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