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Basal Signalling Through Death Receptor 5 and Caspase 3 Activates p38 Kinase to Regulate Serum Response Factor (SRF)-Mediated MyoD Transcription

机译:通过死亡受体5和Caspase 3的基础信号传导激活P38激酶以调节血清响应因子(SRF)介导的Myod转录

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We have previously reported that stable expression of a dominant negative Death Receptor 5 (dnDR5) in skeletal myoblasts results in decreased basal caspase activity and decreased mRNA and protein expression of the muscle regulatory transcription factor MyoD in growth medium (GM), resulting in inhibited differentation when myoblasts are then cultured in differentiation media (DM). Further, this decreased level of MyoD mRNA was not a consequence of altered message stability, but rather correlated with decreased acetylation of histones in the distal regulatory region (DRR) of the MyoD extended promoter known to control MyoD transcription. As serum response factor (SRF) is the transcription factor known to be responsible for basal MyoD expression in GM, we compared the level of SRF binding to the non-canonical serum response element (SRE) within the DRR in parental and dnDR5 expressing myoblasts. Herein, we report that stable expression of dnDR5 resulted in decreased levels of serum response factor (SRF) binding to the CArG box in the SRE of the DRR. Total SRF expression levels were not affected, but phosphorylation indicative of SRF activation was impaired. This decreased SRF phosphorylation correlated with decreased phosphorylation-induced activation of p38 kinase. Moreover, the aforementioned signaling events affected by expression of dnDR5 could be appropriately recapitulated using either a pharmacological inhibitor of caspase 3 or p38 kinase. Thus, our results have established a signaling pathway from DR5 through caspases to p38 kinase activation, to SRF activation and the basal expression of MyoD.Copyright: ? 2020 The Author(s).
机译:先前,我们先前已经报道了骨架肌细胞中显性阴性死亡受体5(DNDR5)的稳定表达导致基础胱天冬酶活性降低,并降低生长培养基(GM)中的肌肉调节转录因子MyOD的mRNA和蛋白质表达,导致抑制区别当然后在分化培养基(DM)中培养肌细胞。此外,这种降低的MyOD mRNA水平不是改变消息稳定性的结果,而是与已知的Myod延长促进剂的远端调节区(DRR)中的随着作用的远端调节区(DRR)的乙酰化而相关的结果。由于血清响应因子(SRF)是已知的转录因子,该转录因子负责在GM中的基础Myod表达,与表达肌细胞的孕肌细胞的DRR中的DRR内的SRF结合水平与非规范血清反应元素(SRE)进行比较。在此,我们报告了DNDR5的稳定表达导致血清响应因子(SRF)的水平降低与DRR的SRE中的颈箱结合。总SRF表达水平不受影响,但表明SRF活化的磷酸化被损害。这种降低的SRF磷酸化与降低的p38激酶的磷酸化诱导的激活相关。此外,可以使用Caspase 3或P38激酶的药理学抑制剂适当地重新综合受DNDR5的表达影响的上述信号传导事件。因此,我们的结果已经建立了从DR5通过Caspases到P38激酶激活的信号通路,以SRF激活和Myod.copyright的基础表达:? 2020提交人。

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