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首页> 外文期刊>American Journal of Translational Research >Effect of TEAD4 on multilineage differentiation of muscle-derived stem cells
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Effect of TEAD4 on multilineage differentiation of muscle-derived stem cells

机译:TEAD4对肌肉来源干细胞多向分化的影响

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摘要

TEAD4 is a member of transcriptional enhancer factor (TEF) family of transcription factors and plays a pivotal role in regulating embryonic development and muscle regeneration. Known previously, dysfunction of TEAD4 in mouse myoblasts impairs myotube development. However, the effects of TEAD4 on multipotency of muscle-derived stem cells (MDSCs) have not been clearly understood. Recently, bovine MDSCs (bMDSCs) were successfully isolated from adult bovine muscle. Our derived bMDSCs could differentiate into mesodermal cells, including myotubes, adipocytes, and osteoid cells. Our results also revealed that bMDSCs had the capacity to develop into ectodermal and endodermal lineages including neuron-like cells and insulin-secreting cells. After TEAD4 knock-down (TEAD4-KD), bMDSCs still kept the original capacity to differentiate into neuron-like cells and insulin-secreting cells, as shown by acquisition of both neuronal and pancreatic markers normally expressed in differentiated cells. However, up-regulation of CAV3 and βMHC failed during myogenesis of bMDSCs with TEAD4-KD, although TEAD4-KD in bMDSCs did not affect osteoid cells and myotube formation. More interestingly, adipogenic differentiation of TEAD4-KD bMDSCs was significantly suppressed. During adipogenic differentiation, TEAD4-KD systematically impaired upregulation of TEAD1, TEAD2, and TEAD3, as well as the activation of C/EBP2, ADD1, and PPARγ as the key transcription factors for adipogenic differentiation. Finally, TEAD4-KD led to the failure of adipogenesis from bMDSCs. Together, our results support that TEAD4 is essential during adipogenic differentiation of bMDSCs. It has little effect on myogenesis of bMDSCs, and does not affect ostegenesis, neurogenesis, or pancreatic differentiation of bMDSCs. Our findings will be helpful for future study on the roles of the TEAD family during differentiation of MDSCs, and for controlling MDSC differentiation for stem cell applications.
机译:TEAD4是转录增强因子(TEF)转录因子家族的成员,在调节胚胎发育和肌肉再生中起关键作用。先前已知,TEAD4在小鼠成肌细胞中的功能障碍会损害肌管的发育。但是,尚未清楚了解TEAD4对肌肉衍生干细胞(MDSC)多能性的影响。最近,从成年牛肌肉中成功分离出牛MDSC(bMDSC)。我们衍生的bMDSCs可以分化为中胚层细胞,包括肌管,脂肪细胞和类骨质细胞。我们的研究结果还表明,bMDSCs具有发展为外胚层和内胚层谱系的能力,包括神经元样细胞和胰岛素分泌细胞。敲除TEAD4(TEAD4-KD)后,bMDSC仍然保持了分化为神经元样细胞和胰岛素分泌细胞的原始能力,这是通过获取分化细胞中正常表达的神经元和胰腺标记物所显示的。然而,尽管bMDSCs中的TEAD4-KD不会影响类骨细胞和肌管的形成,但在bMDSCs的TEAD4-KD发生过程中,CAV3和βMHC的上调失败。更有趣的是,TEAD4-KD bMDSCs的成脂分化得到显着抑制。在成脂分化过程中,TEAD4-KD系统性地削弱TEAD1,TEAD2和TEAD3的上调,以及C / EBP2,ADD1和PPARγ的激活作为成脂分化的关键转录因子。最后,TEAD4-KD导致bMDSCs脂肪生成失败。总之,我们的结果支持TEAD4在bMDSCs成脂分化过程中至关重要。它对bMDSC的肌发生作用几乎没有影响,并且不影响bMDSC的成骨,神经发生或胰腺分化。我们的发现将有助于进一步研究TEAD家族在MDSCs分化过程中的作用,并控制干细胞应用中MDSC的分化。

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