Liggins Institute, University of Auckland , Auckland , New Zealand.
School of Biological Sciences, University of Auckland , Auckland , New Zealand.
Physiol Genomics. 2018 Jun 1;50(6):416-424. doi: 10.1152/physiolgenomics.00112.2017. Epub 2018 Mar 30.
The loss of muscle size, strength, and quality with aging is a major determinant of morbidity and mortality in the elderly. The regulatory pathways that impact the muscle phenotype include the translational regulation maintained by microRNAs (miRNA). Yet the miRNAs that are expressed in human skeletal muscle and relationship to muscle size, strength, and quality are unknown. Using next-generation sequencing, we selected the 50 most abundantly expressed miRNAs and then analyzed them in vastus lateralis muscle, obtained by biopsy from middle-aged males ( n = 48; 50.0 ± 4.3 yr). Isokinetic strength testing and midthigh computed tomography was undertaken for muscle phenotype analysis. Muscle attenuation was measured by computerized tomography and is inversely proportional to myofiber lipid content. miR-486-5p accounted for 21% of total miR sequence reads, with miR-10b-5p, miR-133a-3p, and miR-22-3p accounting for a further 15, 12, and 10%, respectively. Isokinetic knee extension strength and muscle cross-sectional area were positively correlated with miR-100-5p, miR-99b-5p, and miR-191-5p expression. Muscle attenuation was negatively correlated to let-7f-5p, miR-30d-5p, and miR-125b-5p expression. In silico analysis implicates miRNAs related to strength and muscle size in the regulation of mammalian target of rapamycin, while miRNAs related to muscle attenuation may have potential roles regulating the transforming growth factor-β/SMAD3 pathway.
随着年龄的增长,肌肉大小、力量和质量的丧失是老年人发病率和死亡率的主要决定因素。影响肌肉表型的调节途径包括由 microRNAs(miRNA)维持的翻译调节。然而,在人体骨骼肌中表达的 miRNAs 及其与肌肉大小、力量和质量的关系尚不清楚。我们使用下一代测序技术选择了 50 个表达最丰富的 miRNAs,然后在中年男性(n=48;50.0±4.3 岁)的股外侧肌活检中分析了这些 miRNAs。对肌肉表型进行了等速力量测试和大腿中段计算机断层扫描分析。肌肉衰减由计算机断层扫描测量,与肌纤维脂质含量成反比。miR-486-5p 占总 miR 序列读数的 21%,miR-10b-5p、miR-133a-3p 和 miR-22-3p 分别占 15%、12%和 10%。等速膝关节伸展力量和肌肉横截面积与 miR-100-5p、miR-99b-5p 和 miR-191-5p 的表达呈正相关。肌肉衰减与 let-7f-5p、miR-30d-5p 和 miR-125b-5p 的表达呈负相关。计算机分析提示与力量和肌肉大小相关的 miRNAs 参与了雷帕霉素哺乳动物靶蛋白的调节,而与肌肉衰减相关的 miRNAs 可能在调节转化生长因子-β/SMAD3 途径方面具有潜在作用。