首页> 外文期刊>Journal of cell biology >Nerve growth factor and fibroblast growth factor regulate neurite outgrowth and gene expression in PC12 cells via both protein kinase C- and cAMP-independent mechanisms.
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Nerve growth factor and fibroblast growth factor regulate neurite outgrowth and gene expression in PC12 cells via both protein kinase C- and cAMP-independent mechanisms.

机译:神经生长因子和成纤维细胞生长因子通过蛋白激酶C和cAMP独立机制调节PC12细胞中的神经突生长和基因表达。

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Nerve growth factor (NGF), acidic fibroblast growth factor (aFGF), and basic fibroblast growth factor (bFGF) promote the survival and differentiation of a variety of peripheral and central neurons. The signal transduction mechanisms that mediate the actions of these factors in neuronal cells are not well understood. We examined the effect of a deficiency in protein kinase C (PKC) and/or cAMP second messenger systems on the actions of NGF, aFGF, and bFGF in the pheochromocytoma (PC12) cell line. Activation of PKC was not required for NGF, aFGF, and bFGF to maximally induce ornithine decarboxylase (ODC), transcription of the early response genes, d2 and d5, or neurite outgrowth. In a PC12 cell mutant that is deficient in cAMP responsiveness (A126-1B2), all three growth factors maximally induced the transcription of d5 and neurite outgrowth, but aFGF and bFGF did not induce significant increases in ODC. NGF and aFGF maximally induced the transcription of d2 in A126-1B2 cells, but bFGF-induced d2 transcription was attenuated. NGF, aFGF, and bFGF maximally induced neurite outgrowth and d5 transcription in A126 cells that were made deficient in PKC. The d2 transcriptional response was substantially reduced in cells deficient in both PKC and cAMP responsiveness. These observations lead us to conclude that (a) cAMP- and PKC-dependent events are, at least in part, causally linked to NGF, aFGF, and bFGF induction of both ODC and transcription of d2 and may control functionally redundant pathways; (b) NGF, aFGF, and bFGF can elicit neurite outgrowth and increase transcription of d2 and d5 in PC12 cells via mechanisms that are independent of both PKC and cAMP; (c) NGF, aFGF, and bFGF can induce ODC in the absence of PKC; and (d) aFGF and bFGF require cAMP responsiveness to induce ODC in PC12 cells.
机译:神经生长因子(NGF),酸性成纤维细胞生长因子(aFGF)和碱性成纤维细胞生长因子(bFGF)促进多种周围和中枢神经元的存活和分化。在神经元细胞中介导这些因子的作用的信号转导机制尚未被很好地理解。我们检查了蛋白激酶C(PKC)和/或cAMP第二信使系统缺乏对嗜铬细胞瘤(PC12)细胞系中NGF,aFGF和bFGF作用的影响。 NGF,aFGF和bFGF不需要激活PKC即可最大程度地诱导鸟氨酸脱羧酶(ODC),早期反应基因d2和d5的转录或神经突生长。在cAMP反应性不足的PC12细胞突变体(A126-1B2)中,所有三个生长因子均最大程度地诱导了d5的转录和神经突的长出,但aFGF和bFGF并未诱导ODC的显着增加。 NGF和aFGF在A126-1B2细胞中最大程度地诱导了d2的转录,但bFGF诱导的d2转录被减弱。 NGF,aFGF和bFGF在PKC缺陷的A126细胞中最大程度地诱导神经突生长和d5转录。在PKC和cAMP反应性均不足的细胞中,d2转录反应显着降低。这些发现使我们得出以下结论:(a)cAMP和PKC依赖性事件至少部分与ODC和d2的转录的NGF,aFGF和bFGF诱导有因果关系,并可能控制功能冗余的途径; (b)NGF,aFGF和bFGF可通过独立于PKC和cAMP的机制引起神经突增生并增加PC12细胞中d2和d5的转录; (c)NGF,aFGF和bFGF在缺乏PKC的情况下可诱导ODC; (d)aFGF和bFGF需要cAMP应答才能在PC12细胞中诱导ODC。

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