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蛋白激酶C调节的成肌作用与黏着斑激酶、Cas和桩蛋白的酪氨酸磷酸化增加、Cas-CRK复合物的形成以及JNK激活有关。

PKC-regulated myogenesis is associated with increased tyrosine phosphorylation of FAK, Cas, and paxillin, formation of Cas-CRK complex, and JNK activation.

作者信息

Goel Hira Lal, Dey Chinmoy Sankar

机构信息

Signal Transduction Research Laboratory, Department of Biotechnology, National Institute of Pharmaceutical Education and Research, India.

出版信息

Differentiation. 2002 Aug;70(6):257-71. doi: 10.1046/j.1432-0436.2002.700604.x.

Abstract

Previous reports suggest that PKC plays an important role in regulating myogenesis. However, the regulatory signaling pathways are not fully understood. We examined the effects of PKC downregulation on signaling events during skeletal muscle differentiation. We found that downregulation of PKC results in increased myogenesis in C2C12 cells as measured by creatine kinase activity and myogenin expression. We showed that, during differentiation, downregulation of PKC expression results in increased tyrosine phosphorylation of FAK, Cas, and paxillin, concomitant with enhanced Cas-CrkII complex formation, which leads to activation of JNK2. But in proliferated muscle cells, PKC inhibition results in FAK and Cas tyrosine dephosphorylation. Further, disruption of actin cytoskeleton by cytochalasin D prevents the activation of FAK and Cas as well as the formation of Cas-CrkII complex stimulated by PKC downregulation during muscle cell differentiation. Finally, we observed that PKC downregulation increases the tyrosine phosphorylation of focal adhesion associated proteins. Based on the above data, we propose that PKC downregulation results in enhanced tyrosine phosphorylation of FAK, Cas, and paxillin, thus promoting the establishment of Cas-CrkII complex, leading to activation of JNK and that these interactions are dependent upon the integrity of actin cytoskeleton during muscle cell differentiation. Data presented here significantly contribute to elucidating the regulatory role of PKC in myogenesis possibly through integrin signaling pathway.

摘要

先前的报道表明蛋白激酶C(PKC)在调节肌细胞生成中起重要作用。然而,其调节信号通路尚未完全明确。我们研究了PKC下调对骨骼肌分化过程中信号事件的影响。我们发现,通过肌酸激酶活性和肌细胞生成素表达测定,PKC下调导致C2C12细胞中的肌细胞生成增加。我们表明,在分化过程中,PKC表达下调导致粘着斑激酶(FAK)、Cas和桩蛋白的酪氨酸磷酸化增加,同时伴有Cas-CrkII复合物形成增强,进而导致JNK2激活。但在增殖的肌肉细胞中,PKC抑制导致FAK和Cas酪氨酸去磷酸化。此外,细胞松弛素D破坏肌动蛋白细胞骨架可阻止FAK和Cas的激活以及肌肉细胞分化过程中PKC下调所刺激的Cas-CrkII复合物的形成。最后,我们观察到PKC下调增加了粘着斑相关蛋白的酪氨酸磷酸化。基于上述数据,我们提出PKC下调导致FAK、Cas和桩蛋白的酪氨酸磷酸化增强,从而促进Cas-CrkII复合物的形成,导致JNK激活,并且这些相互作用在肌肉细胞分化过程中依赖于肌动蛋白细胞骨架的完整性。本文所呈现的数据可能通过整合素信号通路对阐明PKC在肌细胞生成中的调节作用有显著贡献。

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