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p38 MAPK-induced nuclear factor-kappa B activity is required for skeletal muscle differentiation: Role of interleukin-6

机译:p38 MAPK诱导的核因子-κB活性是骨骼肌分化所必需的:白介素6的作用

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p38 MAPK and nuclear factor-kappaB (NF-kappaB) signaling pathways have been implicated in the control of skeletal myogenesis. However, although p38 is recognized as a potent activator of myoblast differentiation, the role of NF-kappaB remains controversial. Here, we show that p38 is activated only in differentiating myocytes, whereas NF-kappaB activity is present both in proliferation and differentiation stages. NF-kappaB activation was found to be dependent on p38 activity during differentiation, being NF-kappaB an effector of p38, thus providing a novel mechanism for the promyogenic effect of p38. Activation of p38 in C2C12 cells induced the activity of NF-kappaB, in a dual way: first, by reducing IkappaBalpha levels and inducing NF-kappaB-DNA binding activity and, second, by potentiating the transactivating activity of p65-NF-kappaB. Finally, we show that interleukin (IL)-6 expression is induced in C2C12 differentiating myoblasts, in a p38- and NF-kappaB-dependent manner. Interference of IL-6 mRNA reduced, whereas its overexpression increased, the extent of myogenic differentiation; moreover, addition of IL-6 was able to rescue significantly the negative effect of NF-kappaB inhibition on this process. This study provides the first evidence of a crosstalk between p38 MAPK and NF-kappaB signaling pathways during myogenesis, with IL-6 being one of the effectors of this promyogenic mechanism. [References: 68]
机译:p38 MAPK和核因子-kappaB(NF-kappaB)信号转导通路与骨骼肌肌生成的控制有关。然而,尽管p38被认为是成肌细胞分化的有效激活剂,但NF-κB的作用仍存在争议。在这里,我们显示p38仅在分化的心肌细胞中被激活,而NF-κB活性在增殖和分化阶段均存在。发现NF-κB活化在分化过程中依赖于p38活性,是NF-κB是p38的效应子,从而为p38的促肌原作用提供了新的机制。在C2C12细胞中p38的激活以双重方式诱导NF-kappaB的活性:首先,通过降低IkappaBalpha水平并诱导NF-kappaB-DNA结合活性,其次,通过增强p65-NF-kappaB的反式激活活性。最后,我们显示白介素(IL)-6表达以p38-和NF-kappaB依赖的方式在C2C12分化成肌细胞中被诱导。 IL-6 mRNA的干扰减少,而其过表达增加,这是肌原性分化的程度。此外,添加IL-6能够大大挽救NF-κB抑制作用对该过程的负面影响。这项研究提供了p38 MAPK和NF-kappaB信号通路在成肌过程中发生串扰的第一个证据,IL-6是这种早生机制的效应物之一。 [参考:68]

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