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首页> 外文期刊>Molecular and Cellular Biology >Differentiation of central nervous system neuronal cells by fibroblast-derived growth factor requires at least two signaling pathways: roles for Ras and Src.
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Differentiation of central nervous system neuronal cells by fibroblast-derived growth factor requires at least two signaling pathways: roles for Ras and Src.

机译:通过成纤维细胞衍生的生长因子分化中枢神经系统神经元细胞至少需要两个信号通路:Ras和Src的作用。

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To evaluate the role of mitogen-activated protein (MAP) kinase and other signaling pathways in neuronal cell differentiation by basic fibroblast-derived growth factor (bFGF), we used a conditionally immortalized cell line from rat hippocampal neurons (H19-7). Previous studies have shown that activation of MAP kinase kinase (MEK) is insufficient to induce neuronal differentiation of H19-7 cells. To test the requirement for MEK and MAP kinase (ERK1 and ERK2), H19-7 cells were treated with the MEK inhibitor PD098059. Although the MEK inhibitor blocked the induction of differentiation by constitutively activated Raf, the H19-7 cells still underwent differentiation by bFGF. These results suggest that an alternative pathway is utilized by bFGF for differentiation of the hippocampal neuronal cells. Expression in the H19-7 cells of a dominant-negative Ras (N17-Ras) or Raf (C4-Raf) blocked differentiation by bFGF, suggesting that Ras and probably Raf are required. Expression of dominant-negative Src (pcSrc295Arg) or microinjection of an anti-Src antibody blocked differentiation by bFGF in H19-7 cells, indicating that bFGF also signals through a Src kinase-mediated pathway. Although neither constitutively activated MEK (MEK-2E) nor v-Src was sufficient individually to differentiate the H19-7 cells, coexpression of constitutively activated MEK and v-Src induced neurite outgrowth. These results suggest that (i) activation of MAP kinase (ERK1 and ERK2) is neither necessary nor sufficient for differentiation by bFGF; (ii) activation of Src kinases is necessary but not sufficient for differentiation by bFGF; and (iii) differentiation of H19-7 neuronal cells by bFGF requires at least two signaling pathways activated by Ras and Src.
机译:若要评估有丝分裂原激活蛋白(MAP)激酶和其他信号通路在碱性成纤维细胞衍生生长因子(bFGF)诱导神经元细胞分化中的作用,我们使用了大鼠海马神经元(H19-7)有条件永生化的细胞系。先前的研究表明,MAP激酶激酶(MEK)的激活不足以诱导H19-7细胞的神经元分化。为了测试对MEK和MAP激酶(ERK1和ERK2)的需求,用MEK抑制剂PD098059处理H19-7细胞。尽管MEK抑制剂阻止了组成型活化的Raf诱导的分化,但是H19-7细胞仍通过bFGF进行分化。这些结果表明,bFGF利用另一种途径分化海马神经元细胞。显性阴性Ras(N17-Ras)或Raf(C4-Raf)在H19-7细胞中的表达阻止了bFGF的分化,这表明需要Ras和可能的Raf。显性阴性Src(pcSrc295Arg)的表达或抗Src抗体的微量注射可阻止bFGF在H19-7细胞中分化,这表明bFGF也通过Src激酶介导的途径发出信号。尽管组成性激活的MEK(MEK-2E)和v-Src都不足以单独分化H19-7细胞,但组成性激活的MEK和v-Src的共表达可诱导神经突增生。这些结果表明:(i)MAP激酶(ERK1和ERK2)的激活对于bFGF的分化既不是必需的也不是足够的; (ii)Src激酶的激活是必需的,但不足以通过bFGF进行分化; (iii)通过bFGF分化H19-7神经元细胞需要至少两个被Ras和Src激活的信号通路。

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