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首页> 外文期刊>Cell and Tissue Research >Double homeobox gene, Duxbl, promotes myoblast proliferation and abolishes myoblast differentiation by blocking MyoD transactivation.
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Double homeobox gene, Duxbl, promotes myoblast proliferation and abolishes myoblast differentiation by blocking MyoD transactivation.

机译:双同源异型盒基因Duxbl通过阻止MyoD反式激活促进成肌细胞增殖并消除成肌细胞分化。

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摘要

Homeobox genes encode transcription factors that regulate embryonic development programs including organogenesis, axis formation and limb development. Previously, we identified and cloned a mouse double homeobox gene, Duxbl, whose homeodomain exhibits the highest identity (67?%) to human DUX4, a candidate gene of facioscapulohumeral muscular dystrophy (FSHD). Duxbl proteins have been shown to be expressed in elongated myocytes and myotubes of trunk and limb muscles during embryogenesis. In this study, we found that Duxbl maintained low expression levels in various adult muscles. Duxbl proteins were induced to express in activated satellite cells and colocalized with MyoG, a myogenic differentiating marker. Furthermore, Duxbl proteins were not detected in quiescent satellite cells but detected in regenerated myocytes and colocalized with MyoD and MyoG following cardiotoxin-induced muscle injury. Ectopic Duxbl overexpressions in C2C12 myoblast cells promoted cell proliferation through mainly enhancing cyclin D1 and hyper-phosphorylated retinoblastoma protein but reducing p21 expression. However, Duxbl overexpression in C2C12 cells inhibited myogenic differentiation by decreasing MyoD downstream gene expressions, including M-cadherin, MyoG, p21 and cyclin D3 but not MyoD itself. Duxbl overexpressions also promoted cell proliferation but blocked MyoD-induced myogenic conversion in multipotent mesenchymal C3H10T1/2 cells. In addition, results of a luciferase reporter assay suggest that Duxbl negatively regulated MyoG promoter activity through the proximal two E boxes. In conclusion, these results indicate that Duxbl may play a crucial role in myogenesis and postnatal muscle regeneration by activating and proliferating satellite and myoblast cells.
机译:同源盒基因编码调节胚胎发育程序的转录因子,包括器官发生,轴形成和肢体发育。以前,我们鉴定并克隆了一个小鼠双同源异型盒基因Duxbl,其同源结构域与人DUX4(面部肩cap肱型肌营养不良症(FSHD)的候选基因)的同源性最高(67%)。已经证明Duxb1蛋白在胚胎发生期间在伸长的心肌细胞以及躯干和四肢肌肉的肌管中表达。在这项研究中,我们发现Duxbl在各种成年肌肉中维持低表达水平。诱导Duxb1蛋白在活化的卫星细胞中表达,并与成肌分化标记物MyoG共定位。此外,在心脏毒素引起的肌肉损伤后,在静止的卫星细胞中未检测到Duxbl蛋白,但在再生的心肌细胞中检测到了Duxbl蛋白,并与MyoD和MyoG共定位。 C2C12成肌细胞中异位Duxbl的过度表达主要通过增强细胞周期蛋白D1和超磷酸化视网膜母细胞瘤蛋白而降低p21表达来促进细胞增殖。但是,Duxbl在C2C12细胞中的过表达通过降低MyoD下游基因表达(包括M-cadherin,MyoG,p21和cyclin D3)而抑制了肌原性分化,但没有抑制MyoD本身。 Duxbl过表达还促进细胞增殖,但在多能间充质C3H10T1 / 2细胞中阻断了MyoD诱导的成肌转化。另外,萤光素酶报告基因测定的结果表明,Duxbl通过近端的两个E盒负调控MyoG启动子的活性。总之,这些结果表明,Duxbl可能通过激活和增殖卫星和成肌细胞,在肌发生和产后肌肉再生中发挥关键作用。

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