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首页> 外文期刊>Apoptosis: An international journal on programmed cell death >The muscle regulatory transcription factor MyoD participates with p53 to directly increase the expression of the pro-apoptotic Bcl2 family member PUMA
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The muscle regulatory transcription factor MyoD participates with p53 to directly increase the expression of the pro-apoptotic Bcl2 family member PUMA

机译:肌肉调节转录因子Myod与P53一起参与直接增加亲凋亡的BCL2家族成员PUMA的表达

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摘要

The muscle regulatory transcription factor MyoD is a master regulator of skeletal myoblast differentiation. We have previously reported that MyoD is also necessary for the elevated expression of the pro-apoptotic Bcl2 family member PUMA, and the ensuing apoptosis, that occurs in a subset of myoblasts induced to differentiate. Herein, we report the identification of a functional MyoD binding site within the extended PUMA promoter. In silico analysis of the murine PUMA extended promoter revealed three potential MyoD binding sites within 2 kb of the transcription start site. Expression from a luciferase reporter construct containing this 2 kb fragment was enhanced by activation of MyoD in both myoblasts and fibroblasts and diminished by silencing of MyoD in myoblasts. Experiments utilizing truncated versions of this promoter region revealed that the potential binding site at position - 857 was necessary for expression. Chromatin immunoprecipitation (ChIP) analysis confirmed binding of MyoD to the DNA region encompassing position - 857. The increase in MyoD binding to the PUMA promoter as a consequence of culture in differentiation media (DM) was comparable to the increase in MyoD binding at the myogenin promoter and was diminished in myoblasts silenced for MyoD expression. Finally, ChIP analysis using an antibody specific for the transcription factor p53 demonstrated that, in myoblasts silenced for MyoD expression, p53 binding to the PUMA promoter was diminished in response to culture in DM. These data indicate that MyoD plays a direct role in regulating PUMA expression and reveal functional consequences of MyoD expression on p53 mediated transcription of PUMA.
机译:肌肉调节转录因子Myod是骨骼肌细胞分化的母体调节因子。我们此前据报道,MyOD也需要促进促凋亡Bcl2家族成员露珠的表达,以及随后的凋亡,其发生在诱导的肌细胞的子集中。在此,我们报告了延伸的Puma启动子内的功能性Myod结合位点的鉴定。在鼠PUMA延长启动子的硅分析中,在转录开始部位的2Kb内显示出三个潜在的Myod结合位点。通过在肌细胞和成纤维细胞中活化MyOOD并在肌细胞中的沉默中,通过活化粘合剂含有该2kb片段的含有该2kb片段的荧光素酶报告构建体的表达。利用该启动器区域的截短版本的实验表明,表达所需的位置 - 857处的潜在结合位点。染色质免疫沉淀(芯片)分析证实了MyOD对包含位置 - 857的DNA区域的结合。由于在分化培养基(DM)中培养的结果,MyOD与Puma启动子的增加与MyoOD在肌原素中的肌原肌结合的增加相当启动子并用肌细胞沉默于Myood表达而减少。最后,使用针对转录因子P53的抗体的屑分析证明,在沉默的肌细胞中,致肌细胞致敏感,与DM中的培养物响应培养而降低了与Puma启动子的结合。这些数据表明,Myod在调节P53介导的PUMA介导转录的MOSOD表达中发挥了直接作用。

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