Critical roles of IL-6 signaling in myoblast differentiation of human adipose-derived mesenchymal stem cells.

Takashi Otsuka, Kaoru Yamagata, Mai-Phuong Nguyen, Uyen Thi Ngo, Hidenori Sakai, Gulzhan Trimova, Junpei Anan, Yosuke Okada, Shingo Nakayamada, Yoshiya Tanaka
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Abstract

Background: Ectopic fat is also formed in muscles as well as the liver, where adipose-derived mesenchymal stem cells (ADSCs) promote adipogenesis. On the other hand, after muscle injury, muscle satellite cells (SCs) contribute to muscle repair through myodifferentiation. Human ADSCs are multipotent stem cells, but it remains unclear whether they are involved in myoblast differentiation. The aim is to find a novel myogenic cytokine and its signaling pathway that promotes the differentiation of human ADSCs-a potential source of new muscle precursor cells-into myoblasts.

Methods: An array kit was used to detect cytokines produced by ADSCs. After treating ADSCs with the DNA methyltransferase inhibitor 5-Aza-2'-deoxycytidine (5-aza-C) and different JAK inhibitors, MyHC1, a myodifferentiation marker, was detected by immunofluorescence staining and reverse transcription-quantitative polymerase chain reaction (RT-qPCR). The expression status of signaling molecules was determined by Western blotting and the recruitment of transcription factors to the MYOG promoter by chromatin immunoprecipitation (ChIP).

Results: IL-6 was detected at high concentrations in the culture supernatant of ADSCs. ADSCs stimulated with 5-aza-C became strongly positive for MyHC1 on day 21 post-stimulation. When co-stimulated with 5-aza-C and IL-6/sIL-6R, ADSCs became positive for MyHC1 protein and upregulated MYOG mRNA as early as day 14 post-stimulation. Co-stimulation with 5-aza-C and IL-6/sIL-6R resulted in phosphorylation of STAT1 and STAT3. The addition of a JAK2 inhibitor, but not JAK1/3 inhibitors, abolished the MyHC1 positivity and phosphorylation of STAT1 and STAT3. Co-stimulation with 5-aza-C and IL-6/sIL-6R during the myogenesis process resulted in the recruitment of STAT1, but not STAT3, to the MYOG promoter. Myoblast differentiation induced by stimulation with 5-aza-C was enhanced by activation of the IL-6/JAK2/STAT1/MYOG pathway.

Conclusions: Therefore, sustained IL-6/JAK2/STAT1 activation may serve as an important driver of human ADSC differentiation into myoblast, suggesting an important candidate signaling pathway for ameliorating muscle atrophy.

IL-6信号在人脂肪源性间充质干细胞成肌细胞分化中的关键作用。
背景:异位脂肪也可在肌肉和肝脏中形成,脂肪源性间充质干细胞(ADSCs)可促进脂肪形成。另一方面,肌肉损伤后,肌肉卫星细胞(muscle satellite cells, SCs)通过肌分化参与肌肉修复。人类ADSCs是一种多能干细胞,但它们是否参与成肌细胞分化尚不清楚。目的是寻找一种新的肌源性细胞因子及其信号通路,促进人类adscs分化为成肌细胞。adscs是新肌前体细胞的潜在来源。方法:采用阵列检测试剂盒检测ADSCs产生的细胞因子。用DNA甲基转移酶抑制剂5-Aza-2′-脱氧胞苷(5-aza-C)和不同的JAK抑制剂处理ADSCs后,采用免疫荧光染色和逆转录-定量聚合酶链反应(RT-qPCR)检测肌分化标志物MyHC1。Western blotting检测信号分子的表达状态,染色质免疫沉淀法(ChIP)将转录因子募集到MYOG启动子上。结果:在ADSCs培养上清中检测到高浓度的IL-6。5-aza-C刺激的ADSCs在刺激后第21天MyHC1呈强烈阳性。当与5-aza-C和IL-6/sIL-6R共同刺激时,早在刺激后第14天,ADSCs MyHC1蛋白阳性,MYOG mRNA上调。5-aza-C和IL-6/sIL-6R的共刺激导致STAT1和STAT3的磷酸化。添加JAK2抑制剂,而不是JAK1/3抑制剂,可以消除MyHC1阳性和STAT1和STAT3的磷酸化。在肌生成过程中,与5-aza-C和IL-6/sIL-6R的共同刺激导致STAT1而不是STAT3被募集到MYOG启动子。5-aza-C刺激诱导的成肌细胞分化通过激活IL-6/JAK2/STAT1/MYOG通路而增强。因此,IL-6/JAK2/STAT1的持续激活可能是人类ADSC向成肌细胞分化的重要驱动因素,提示了改善肌肉萎缩的重要候选信号通路。
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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