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Autophagy induction in the skeletal myogenic differentiation of human tonsil-derived mesenchymal stem cells

机译:自噬诱导人类扁桃体间充质干细胞在骨骼肌发生分化中的作用

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摘要

Mesenchymal stem cells (MSCs) are capable of self-renewal and differentiation and are thus a valuable source for the replacement of diseased or damaged organs. Previously, we reported that the tonsils can be an excellent reservoir of MSCs for the regeneration of skeletal muscle (SKM) damage. However, the mechanisms involved in the differentiation from tonsil-derived MSCs (T-MSCs) to myocytes via myoblasts remain unclear. To clarify these mechanisms, we analyzed gene expression profiles of T-MSCs during differentiation into myocytes compared with human skeletal muscle cells (hSKMCs). Total RNA was extracted from T-MSCs, T-MSC-derived myoblasts and myocytes, and hSKMCs and was subjected to analysis using a microarray. Microarray analysis of the three phases of myogenic differentiation identified candidate genes associated with myogenic differentiation. The expression pattern of undifferentiated T-MSCs was distinguishable from the myogenic differentiated T-MSCs and hSKMCs. In particular, we selected FNBP1L, which among the upregulated genes is essential for antibacterial autophagy, since autophagy is related to SKM metabolism and myogenesis. T-MSCs differentiated toward myoblasts and skeletal myocytes sequentially, as evidenced by increased expression of autophagy-related markers (including Beclin-1, LC3B and Atg5) and decreased expression of Bcl-2. Furthermore, we reconfirmed that autophagy has an effect on the mechanism of skeletal myogenic differentiation derived from T-MSCs by treatment with 5-azacytidine and bafilomycin A1. These data suggest that the transcriptome of the T-MSC-derived myocytes is similar to that of hSKMCs, and that autophagy has an important role in the mechanism of myogenic differentiation of T-MSCs.
机译:间充质干细胞(MSC)能够自我更新和分化,因此是替换患病或受损器官的宝贵资源。以前,我们报道了扁桃体可以作为MSC再生骨骼肌(SKM)损伤的极好储库。但是,尚不清楚参与通过扁母细胞从扁桃体来源的MSC(T-MSC)分化为肌细胞的机制。为了阐明这些机制,我们分析了与人骨骼肌细胞(hSKMCs)相比,T-MSC在分化为肌细胞过程中的基因表达谱。从T-MSC,T-MSC来源的成肌细胞和心肌细胞以及hSKMCs中提取总RNA,并使用微阵列进行分析。对成肌分化的三个阶段的微阵列分析确定了与成肌分化相关的候选基因。未分化的T-MSCs的表达模式可与成肌分化的T-MSCs和hSKMCs区别开。特别是,我们选择了FNBP1L,因为该基因在上调基因中对细菌自噬至关重要,因为自噬与SKM代谢和肌生成有关。 T-MSCs依次分化为成肌细胞和骨骼肌细胞,自噬相关标志物(包括Beclin-1,LC3B和Atg5)的表达增加和Bcl-2的表达减少证明了这一点。此外,我们确认自噬对5-氮胞苷和巴氟霉素A1的治疗对T-MSC衍生的骨骼肌发生分化的机制有影响。这些数据表明,T-MSC衍生的心肌细胞的转录组与hSKMC相似,并且自噬在T-MSC的成肌分化机制中具有重要作用。

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