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Smad proteins regulate transcriptional induction of the SM22α gene by TGF-β

机译:Smad蛋白调节TGF-β对SM22α基因的转录诱导

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摘要

Smad proteins transduce signals from transforming growth factor-β (TGF-β) receptors and regulate transcription of target genes. TGF-β is implicated in the regulation of the smooth muscle cell specific gene SM22α, but little is known about how Smads are involved in SM22α gene transcription. In this report, we demonstrate that TGF-β activation of the SM22α promoter is Smad dependent in C3H10T1/2 cells, BALB 3T3 cells and neural crest Monc-1 cells. We find that the promoter region from –162 to +41 is sufficient to up-regulate the reporter gene upon TGF-β induction. Smad3, Smad1 and Smad4 are found in TGF-β inducible complexes that bind to a region containing a Smad binding site (SBS) and a medea box. Both the SBS and medea box are necessary for complex formation and are functionally important. Smad4 is limiting for TGF-β induction, and Smad3, but not Smad1, significantly contributes to maximal activation. Time course luciferase assays and time course gel mobility shift assays reveal that the Smad3/4 complex is largely responsible for the immediate response of the SM22α promoter to TGF-β induction, and also contributes to the maximal promoter activity. We further demonstrate that AP-1 elements contribute to induction of the SM22α promoter by TGF-β.
机译:Smad蛋白转导来自转化生长因子-β(TGF-β)受体的信号并调节靶基因的转录。 TGF-β参与了平滑肌细胞特异性基因SM22α的调控,但对Smads如何参与SM22α基因转录的了解甚少。在此报告中,我们证明SM22α启动子的TGF-β激活在C3H10T1 / 2细胞,BALB 3T3细胞和神经c Monc-1细胞中是Smad依赖性的。我们发现,从–162到+41的启动子区域足以在TGF-β诱导后上调报告基因。在与包含Smad结合位点(SBS)和美狄亚盒的区域结合的TGF-β诱导型复合物中发现了Smad3,Smad1和Smad4。 SBS和美狄亚盒子对于复杂的形成都是必需的,并且在功能上很重要。 Smad4限制了TGF-β的诱导,而Smad3而不是Smad1极大地促进了其最大活化。时程荧光素酶测定法和时程凝胶迁移率变动测定法表明,Smad3 / 4复合物在很大程度上负责SM22α启动子对TGF-β诱导的立即反应,并且也有助于最大的启动子活性。我们进一步证明,AP-1元素有助于TGF-β诱导SM22α启动子。

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