首页> 外文OA文献 >GTK, a Src-related tyrosine kinase, induces nerve growth factor-independent neurite outgrowth in PC12 cells through activation of the Rap1 pathway. Relationship to Shb tyrosine phosphorylation and elevated levels of focal adhesion kinase
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GTK, a Src-related tyrosine kinase, induces nerve growth factor-independent neurite outgrowth in PC12 cells through activation of the Rap1 pathway. Relationship to Shb tyrosine phosphorylation and elevated levels of focal adhesion kinase

机译:GTK是一种与Src相关的酪氨酸激酶,通过激活Rap1途径在PC12细胞中诱导神经生长因子依赖性神经突向外生长。与Shb酪氨酸磷酸化和粘着斑激酶水平升高的关系

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摘要

The rat pheochromocytoma cell line PC12 is extensively used as a model for studies of neuronal cell differentiation. These cells develop a sympathetic neuron-like phenotype when cultured in the presence of nerve growth factor. The present study was performed in order to assess the role of mouse GTK (previously named BSK/IYK), a cytoplasmic tyrosine kinase belonging to the Src family, for neurite outgrowth in PC12 cells. We report that PC12 cells stably overexpressing GTK exhibit a larger fraction of cells with neurites as compared with control cells, and this response is not accompanied by an increased ERK activity. Treatment of the cells with the MEK inhibitor PD98059 did not reduce the GTK-dependent increased in neurite outgrowth. GTK expression induces a nerve growth factor-independent Rap1 activation, probably through altered CrkII signaling. We observe increased CrkII complex formation with p130(Cas), focal adhesion kinase (FAK), and Shb in PC12-GTK cells. The expression of GTK also correlates with a markedly increased content of FAK, phosphorylation of the adaptor protein Shb, and an association between these two proteins. Transient transfection of GTK-overexpressing cells with RalGDS-RBD or Rap1GAP, inhibitors of the Rap1 pathway, reduces the GTK-dependent neurite outgrowth. These data suggest that GTK participates in a signaling pathway, perhaps involving Shb, FAK and Rap1, that induces neurite outgrowth in PC12 cells
机译:大鼠嗜铬细胞瘤细胞系PC12被广泛用作研究神经元细胞分化的模型。当在神经生长因子存在下培养时,这些细胞会形成交感神经元样表型。进行本研究是为了评估小鼠GTK(以前称为BSK / IYK)(一种属于Src家族的细胞质酪氨酸激酶)对于PC12细胞中神经突生长的作用。我们报告稳定地过表达GTK的PC12细胞与对照细胞相比表现出更大比例的带有神经突的细胞,并且这种反应并不伴有增加的ERK活性。用MEK抑制剂PD98059处理细胞未减少神经突增生的GTK依赖性增加。 GTK表达可能通过改变CrkII信号传导来诱导神经生长因子非依赖性Rap1激活。我们观察到PC12-GTK细胞中与p130(Cas),粘着斑激酶(FAK)和Shb的CrkII复合物形成增加。 GTK的表达还与FAK含量显着增加,衔接蛋白Shb的磷酸化以及这两种蛋白之间的关联有关。用RalGDS-RBD或Rap1GAP(Rap1途径的抑制剂)瞬时转染GTK过表达的细胞,可减少GTK依赖性神经突的生长。这些数据表明GTK参与了一个信号通路,可能涉及Shb,FAK和Rap1,该通路在PC12细胞中诱导神经突生长。

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