Extracellular vesicles may provide an alternative detoxification pathway during skeletal muscle myoblast ageing

María Fernández-Rhodes, Emma Buchan, Stephanie D. Gagnon, Jiani Qian, Lee Gethings, Rebecca Lees, Ben Peacock, Andrew J. Capel, Neil R. W. Martin, Pola Goldberg Oppenheimer, Mark P. Lewis, Owen G. Davies
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Abstract

Skeletal muscle (SM) acts as a secretory organ, capable of releasing myokines and extracellular vesicles (SM-EVs) that impact myogenesis and homeostasis. While age-related changes have been previously reported in murine SM-EVs, no study has comprehensively profiled SM-EV in human models. To this end, we provide the first comprehensive comparison of SM-EVs from young and old human primary skeletal muscle cells (HPMCs) to map changes associated with SM ageing. HPMCs, isolated from young (24 ± 1.7 years old) and older (69 ± 2.6 years old) participants, were immunomagnetically sorted based on the presence of the myogenic marker CD56 (N-CAM) and cultured as pure (100% CD56+) or mixed populations (MP: 90% CD56+). SM-EVs were isolated using an optimised protocol combining ultrafiltration and size exclusion chromatography (UF + SEC) and their biological content was extensively characterised using Raman spectroscopy (RS) and liquid chromatography mass spectrometry (LC-MS). Minimal variations in basic EV parameters (particle number, size, protein markers) were observed between young and old populations. However, biochemical fingerprinting by RS highlighted increased protein (amide I), lipid (phospholipids and phosphatidylcholine) and hypoxanthine signatures for older SM-EVs. Through LC-MS, we identified 84 shared proteins with functions principally related to cell homeostasis, muscle maintenance and transcriptional regulation. Significantly, SM-EVs from older participants were comparatively enriched in proteins involved in oxidative stress and DNA/RNA mutagenesis, such as E3 ubiquitin-protein ligase TTC3 (TTC3), little elongation complex subunit 1 (ICE1) and Acetyl-CoA carboxylase 1 (ACACA). These data suggest SM-EVs could provide an alternative pathway for homeostasis and detoxification during SM ageing.

Abstract Image

细胞外囊泡可能是骨骼肌肌母细胞老化过程中的另一种解毒途径。
骨骼肌(SM)是一个分泌器官,能够释放影响肌生成和稳态的肌动素和细胞外囊泡(SM-EVs)。虽然以前曾报道过小鼠 SM-EV 与年龄有关的变化,但还没有研究对人类模型中的 SM-EV 进行全面剖析。为此,我们首次对来自年轻和年老的人类原发性骨骼肌细胞(HPMCs)的SM-EV进行了全面比较,以绘制与SM老化相关的变化图。从年轻(24 ± 1.7 岁)和年长(69 ± 2.6 岁)的参与者身上分离出的 HPMCs 根据肌源性标记物 CD56(N-CAM)的存在情况进行免疫分选,并培养成纯种(100% CD56+)或混合种群(MP:90% CD56+)。使用超滤和尺寸排阻色谱(UF + SEC)相结合的优化方案分离 SM-EV,并使用拉曼光谱(RS)和液相色谱质谱(LC-MS)对其生物含量进行广泛表征。在年轻和年老的人群中观察到,EV 基本参数(颗粒数量、大小、蛋白质标记物)的变化极小。然而,通过 RS 进行的生化指纹图谱分析显示,老年 SM-EV 的蛋白质(酰胺 I)、脂质(磷脂和磷脂酰胆碱)和次黄嘌呤特征增加。通过 LC-MS,我们确定了 84 种共有蛋白质,其功能主要与细胞稳态、肌肉维持和转录调控有关。值得注意的是,老年参与者的SM-EV相对富含参与氧化应激和DNA/RNA诱变的蛋白质,如E3泛素蛋白连接酶TTC3(TTC3)、小伸长复合体亚基1(ICE1)和乙酰-CoA羧化酶1(ACACA)。这些数据表明,SM-EV 可为 SM 老化过程中的平衡和解毒提供另一种途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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