首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Mesenchyme homeobox 1 mediates transforming growth factor-β (TGF-β)–induced smooth muscle cell differentiation from mouse mesenchymal progenitors
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Mesenchyme homeobox 1 mediates transforming growth factor-β (TGF-β)–induced smooth muscle cell differentiation from mouse mesenchymal progenitors

机译:间充质同源盒1介导转化生长因子-β(TGF-β)诱导的小鼠间充质祖细胞平滑肌细胞分化

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摘要

Differentiation of smooth muscle cells (SMCs) is critical for proper vasculogenesis and angiogenesis. However, the molecular mechanisms controlling SMC differentiation are not completely understood. During embryogenesis, the transcription factor mesenchyme homeobox 1 (Meox1) is expressed in the early developing somite, which is one of the origins of SMCs. In the present study, we identified Meox1 as a positive regulator of SMC differentiation. We found that transforming growth factor-β (TGF-β) induces Meox1 expression in the initial phase of SMC differentiation of pluripotent murine C3H10T1/2 cells. shRNA-mediated Meox1 knockdown suppressed TGF-β–induced expression of SMC early markers, whereas Meox1 overexpression increased expression of these markers. Mechanistically, Meox1 promoted SMAD family member 3 (Smad3) nuclear retention during the early stage of TGF-β stimulation because Meox1 inhibited protein phosphatase Mg2+/Mn2+-dependent 1A (PPM1A) and thereby prevented PPM1A-mediated Smad3 dephosphorylation. Meox1 appears to promote PPM1A degradation, leading to sustained Smad3 phosphorylation, thus allowing Smad3 to stimulate SMC gene transcription. In vivo, Meox1 knockdown in mouse embryos impaired SMC marker expression in the descending aorta of neonatal mice, indicating that Meox1 is essential for SMC differentiation during embryonic development. In summary, the transcriptional regulator Meox1 controls TGF-β–induced SMC differentiation from mesenchymal progenitor cells by preventing PPM1A-mediated Smad3 dephosphorylation, thereby supporting SMC gene expression.
机译:平滑肌细胞(SMC)的分化对于适当的血管生成和血管生成至关重要。但是,尚不完全了解控制SMC分化的分子机制。在胚胎发生过程中,转录因子间质同源盒1(Meox1)在早期发育的somite中表达,这是SMC的起源之一。在本研究中,我们确定Meox1为SMC分化的正调节剂。我们发现转化生长因子-β(TGF-β)在多能小鼠C3H10T1 / 2细胞SMC分化的初始阶段诱导Meox1表达。 shRNA介导的Meox1敲低抑制了TGF-β诱导的SMC早期标志物的表达,而Meox1的过表达增加了这些标志物的表达。从机理上讲,Meox1在TGF-β刺激的早期促进了SMAD家族3(Smad3)的核保留,因为Meox1抑制了蛋白磷酸酶Mg 2 + / Mn 2 + 依赖性1A(PPM1A),从而防止了PPM1A介导的Smad3去磷酸化。 Meox1似乎促进PPM1A降解,导致持续的Smad3磷酸化,从而使Smad3刺激SMC基因转录。在体内,小鼠胚胎中的Meox1敲低损害了新生小鼠降主动脉中的SMC标记物表达,表明Meox1对胚胎发育过程中的SMC分化至关重要。总之,转录调节因子Meox1通过阻止PPM1A介导的Smad3去磷酸化作用来控制TGF-β诱导的SMC从间充质祖细胞分化,从而支持SMC基因表达。

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