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Dynamic membrane proteome of adipogenic and myogenic precursors in skeletal muscle highlights EPHA2 may promote myogenic differentiation through ERK signaling

机译:骨骼肌中成脂和成肌前体的动态膜蛋白质组学突出显示EPHA2可能通过ERK信号促进成肌分化

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The balance of myogenic and adipogenic differentiation is crucial for skeletal muscle homeostasis. Given the vital role of membrane proteins (MBPs) in cell signal perception, membrane proteomics was conducted to delineate mechanisms regulating differentiation of adipogenic and myogenic precursors in skeletal muscle. Adipogenic and myogenic precursors with divergent differentiation potential were isolated from the longissimus dorsi muscle of neonatal pigs by the preplate method. A total of 85 differentially expressed MBPs ( P & 0.05 and fold change ≥1.2 or ≤0.83) between 2 precursors were detected via isobaric tags for relative and absolute quantitation (iTRAQ) assay, including 67 up-regulated and 18 down-regulated in myogenic precursors. Functional enrichment analysis uncovered that myogenic and adipogenic precursors showed significant differences in cytoskeleton organization, syncytium formation, environmental information processing, and organismal systems. Furthermore, key MBPs in regulating cell differentiation were also characterized, including ITGB3, ITGAV, ITPR3, and EPHA2. Noteworthily, EPHA2 was required for myogenic differentiation, and it may promote myogenic differentiation through ERK signaling. Collectively, our study provided an insight into the distinct MBP profile between myogenic and adipogenic precursors in skeletal muscle and served as a solid basis for supporting the role of MBPs in regulating differentiation.—Zhang, X., Wang, L., Qiu, K., Xu, D., Yin, J. Dynamic membrane proteome of adipogenic and myogenic precursors in skeletal muscle highlights EPHA2 may promote myogenic differentiation through ERK signaling.
机译:成肌和成脂分化的平衡对于骨骼肌稳态是至关重要的。鉴于膜蛋白(MBP)在细胞信号感知中的重要作用,进行了膜蛋白质组学研究,以调节调节骨骼肌中成脂和成肌前体分化的机制。通过预板法从新生猪背最长肌分离出具有分化潜能的成脂和成肌前体。通过等压标记用于相对和绝对定量(iTRAQ)检测,共检测到2种前体之间的85种差异表达的MBP(P <0.05和倍数变化≥1.2或≤0.83),包括67种上调的MBP和18种下调的MBP。成肌前体。功能富集分析发现,成肌和成脂前体在细胞骨架组织,合胞体形成,环境信息处理和生物系统方面显示出显着差异。此外,还表征了调节细胞分化的关键MBP,包括ITGB3,ITGAV,ITPR3和EPHA2。值得注意的是,EPHA2是成肌分化所必需的,它可能通过ERK信号传导促进成肌分化。总的来说,我们的研究提供了骨骼肌中成肌和成脂前体之间独特的MBP分布的深刻见解,并为支持MBP在调节分化中的作用提供了坚实的基础。-Zhang,X.,Wang,L.,Qiu,K骨骼肌中成脂和成肌前体的动态膜蛋白质组突出显示EPHA2可能通过ERK信号传导促进成肌分化。

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