首页> 美国卫生研究院文献>other >Cooperation between Shh and IGF-I in Promoting Myogenic Proliferation and Differentiation via the MAPK/ERK and PI3K/Akt Pathways Requires Smo Activity
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Cooperation between Shh and IGF-I in Promoting Myogenic Proliferation and Differentiation via the MAPK/ERK and PI3K/Akt Pathways Requires Smo Activity

机译:SHH和IGF-I之间的合作通过MAPK / ERK和PI3K / AKT途径促进肌遗传增殖和分化需要SMO活动

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摘要

Sonic hedgehog (Shh) has been shown to promote adult myoblast proliferation and differentiation and affect Akt phosphorylation via its effector Smoothened (Smo). Here, the relationship between Shh and IGF-I was examined with regard to myogenic differentiation via signaling pathways which regulate this process. Each factor enhanced Akt and MAPK/ERK (p42/44) phosphorylation and myogenic factor expression levels in a dose-responsive manner, while combinations of Shh and IGF-I showed additive effects. Blockage of the IGF-I effects by neutralizing antibody partially reduced Shh’s effects on signaling pathways, suggesting that IGF-I enhances, but is not essential for Shh effects. Addition of cyclopamine, a Smo inhibitor, reduced Shh- and IGF-I-induced Akt phosphorylation in a similar manner, implying that Shh affects gain of the IGF-I signaling pathway. This implication was also examined via a genetic approach. In cultures derived from Smomut (MCre;Smoflox/flox) mice lacking Smo expression specifically in hindlimb muscles, IGF-I-induced Akt and p42/44 phosphorylation was significantly reduced compared to IGF-I’s effect on Smocont cells. Moreover, remarkable inhibition of the stimulatory effect of IGF-I on myogenic differentiation was observed in Smomut cultures, implying that intact Smo is required for IGF-I effects in myoblasts. Immunoprecipitation assays revealed that p-Tyr proteins, including the regulatory unit of PI3K (p85), are recruited to Smo in response to Shh. Moreover, IGF-IR was found to associate with Smo in response to Shh and to IGF-I, suggesting that Shh and IGF-I are already integrated at the receptor level, a mechanism by which their signaling pathways interact in augmenting their effects on adult myoblasts.
机译:Sonic Hedgehog(SHH)已被证明促进成人肌细胞增殖和分化,并通过其效应平滑(SMO)影响AKT磷酸化。这里,通过调节该过程的信号通路,研究了SHH和IGF-I之间的关系,所述信号传导途径调节该过程。每种因子以剂量反应方式增强AKT和MAPK / ERK(P42 / 44)磷酸化和肌遗传因子表达水平,而SHH和IGF-I的组合显示添加剂效应。通过中和抗体的堵塞部分降低了SHH对信号通路的影响,表明IGF-I增强,但对SHH效应不是必需的。以类似的方式添加环丙氨酸,Smo抑制剂,降低的SHH-和IGF-I诱导的AKT磷酸化,暗示SHH影响IGF-I信号通路的增益。还通过遗传方法检查了这种含义。在培养物中衍生自Smo mut (mcre; smo; smo; smo flox / flox / flox / flox / sp>)小鼠缺乏Smo表达的小鼠,特别是在后肢肌肉中,IGF-I诱导的Akt和P42 / 44磷酸化显着与IGF-I对Smo 拷贝细胞的影响减少。此外,在Smo mut 培养物中观察到对IGF-1对肌遗传分化的刺激作用的显着抑制,这意味着IGF-I在肌细胞中的IGF-I效应需要完整的SMO。免疫沉淀的测定显示,P-Tyr蛋白,包括PI3K(P85)的调节单元,响应于SHH募集到Smo。此外,发现IGF-IR响应于SHH和IGF-I与SMO相关联,表明SHH和IGF-I已经集成在受体水平,其信号传导途径在增强其对成人的影响时互动的机制肌细胞。

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