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Lysophosphatidic Acid Signaling Axis Mediates Ceramide 1-Phosphate-Induced Proliferation of C2C12 Myoblasts

机译:溶血磷脂酸信号轴介导神经酰胺1-磷酸诱导的C2C12成肌细胞增殖。

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摘要

Sphingolipids are not only crucial for membrane architecture but act as critical regulators of cell functions. The bioactive sphingolipid ceramide 1-phosphate (C1P), generated by the action of ceramide kinase, has been reported to stimulate cell proliferation, cell migration and to regulate inflammatory responses via activation of different signaling pathways. We have previously shown that skeletal muscle is a tissue target for C1P since the phosphosphingolipid plays a positive role in myoblast proliferation implying a role in muscle regeneration. Skeletal muscle displays strong capacity of regeneration thanks to the presence of quiescent adult stem cells called satellite cells that upon trauma enter into the cell cycle and start proliferating. However, at present, the exact molecular mechanism by which C1P triggers its mitogenic effect in myoblasts is lacking. Here, we report for the first time that C1P stimulates C2C12 myoblast proliferation via lysophosphatidic acid (LPA) signaling axis. Indeed, C1P subsequently to phospholipase A2 activation leads to LPA1 and LPA3 engagement, which in turn drive Akt (protein kinase B) and ERK1/2 (extracellular signal-regulated kinases 1/2) activation, thus stimulating DNA synthesis. The present findings shed new light on the key role of bioactive sphingolipids in skeletal muscle and provide further support to the notion that these pleiotropic molecules might be useful therapeutic targets for skeletal muscle regeneration.
机译:鞘脂不仅对于膜结构至关重要,而且作为细胞功能的关键调节剂。据报道,由神经酰胺激酶的作用产生的生物活性鞘脂神经酰胺1-磷酸酯(C1P)刺激细胞增殖,细胞迁移并通过激活不同的信号通路来调节炎症反应。以前我们已经证明骨骼肌是C1P的组织靶标,因为磷酸鞘脂在成肌细胞增殖中起着积极的作用,暗示着在肌肉再生中的作用。骨骼肌显示出强大的再生能力,这归因于被称为卫星细胞的静止的成年干细胞的存在,一旦受伤,干细胞就会进入细胞周期并开始增殖。但是,目前尚缺乏C1P触发其在成肌细胞中促有丝分裂作用的确切分子机制。在这里,我们首次报道C1P通过溶血磷脂酸(LPA)信号轴刺激C2C12成肌细胞增殖。确实,随后磷脂酶A2激活的C1P导致LPA1和LPA3接合,进而驱动Akt(蛋白激酶B)和ERK1 / 2(细胞外信号调节激酶1/2)激活,从而刺激DNA合成。目前的发现为生物活性鞘脂在骨骼肌中的关键作用提供了新的线索,并为这些多效分子可能是骨骼肌再生的有用治疗靶点的观念提供了进一步的支持。

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