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首页> 外文期刊>The Journal of general physiology >Mini-dystrophin Expression Down-regulates Overactivation of G Protein–mediated IP3 Signaling Pathway in Dystrophin-deficient Muscle Cells
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Mini-dystrophin Expression Down-regulates Overactivation of G Protein–mediated IP3 Signaling Pathway in Dystrophin-deficient Muscle Cells

机译:微型肌营养不良蛋白表达下调肌营养不良蛋白缺陷型肌肉细胞中G蛋白介导的IP3信号通路的过度激活。

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We present here evidence for the enhancement of an inositol 1,4,5-trisphosphate (IP3) mediated calcium signaling pathway in myotubes from dystrophin-deficient cell lines (SolC1(?)) as compared to a cell line from the same origin but transfected with mini-dystrophin (SolD(+)). With confocal microscopy, we demonstrated that calcium rise, induced by the perifusion of a solution containing a high potassium concentration, was higher in SolC1(?) than in SolD(+) myotubes. The analysis of amplitude and kinetics of the calcium increase in SolC1(?) and in SolD(+) myotubes during the exposure with SR Ca2+ channel inhibitors (ryanodine and 2-APB) suggested the presence of two mechanisms of SR calcium release: (1) a fast SR calcium release that depended on ryanodine receptors and (2) a slow SR calcium release mediated by IP3 receptors. Detection analyses of mRNAs (reverse transcriptase [RT]-PCR) and proteins (Western blot and immunolocalization) demonstrated the presence of the three known isoforms of IP3 receptors in both SolC1(?) and SolD(+) myotubes. Furthermore, analysis of the kinetics of the rise in calcium revealed that the slow IP3-dependent release may be increased in the SolC1(?) as compared to the SolD(+), suggesting an inhibitory effect of mini-dystrophin in this signaling pathway. Upon incubation with pertussis toxin (PTX), an inhibitory effect similar to that of the IP3R inhibitor (2-APB) was observed on K+-evoked calcium release. This result suggests the involvement of a Gi protein upstream of the IP3 pathway in these stimulation conditions. A hypothetical model is depicted in which both Gi protein and IP3 production could be involved in K+-evoked calcium release as well as a possible interaction with mini-dystrophin. Our findings demonstrate the existence of a potential relationship between mini-dystrophin and SR calcium release as well as a regulatory role of mini-dystrophin on intracellular signaling.
机译:我们在这里提供证据,从肌营养不良蛋白缺陷型细胞系(SolC1(?))的肌管中,肌醇1,4,5-三磷酸(IP3)介导的钙信号通路与来自相同来源但转染的细胞系相比有所增强与小型肌营养不良蛋白(SolD(+))。通过共聚焦显微镜,我们证明了由高钾浓度溶液的灌注引起的钙升高在SolC1(?)中比在SolD(+)肌管中更高。在用SR Ca2 +通道抑制剂(莱丹碱和2-APB)暴露期间,SolC1(?)和SolD(+)肌管中钙增加的幅度和动力学分析表明存在两种SR钙释放机制:(1 )取决于ryanodine受体的SR钙快速释放;以及(2)IP3受体介导的SR钙缓慢释放。对mRNA(逆转录酶[RT] -PCR)和蛋白质(Western印迹法和免疫定位)的检测分析表明,SolC1(?)和SolD(+)肌管中存在IP3受体的三种已知同工型。此外,对钙升高的动力学的分析表明,与SolD(+)相比,SolC1(α)中IP3依赖性的缓慢释放可能会增加,这表明在该信号传导途径中微肌营养不良蛋白具有抑制作用。与百日咳毒素(PTX)孵育后,观察到与IP3R抑制剂(2-APB)相似的抑制作用对K +引起的钙释放。该结果表明在这些刺激条件下IP3途径上游的Gi蛋白的参与。描述了一个假想模型,其中Gi蛋白和IP3的产生都可能与K +诱发的钙释放以及可能与小肌营养不良蛋白的相互作用有关。我们的研究结果表明小型肌营养不良蛋白和SR钙释放之间存在潜在的关系,以及小型肌营养不良蛋白对细胞内信号传导的调节作用。

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