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Neuropeptide FF activates ERK and NF kappa B signal pathways in differentiated SH-SY5Y cells

机译:神经肽FF激活分化的SH-SY5Y细胞中的ERK和NFκB信号通路

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Neuropeptide FF (NPFF) has been reported to play important roles in regulating diverse biological processes. However, little attention has been focused on the downstream signal transduction pathway of NPFF. Here, we used the differentiated neuroblastoma cell line, dSH-SY5Y, which endogenously expresses hNPFF2 receptor, to investigate the signal transduction downstream of NPFF. In particular we investigated the regulation of the extracellular signal-regulated protein kinase (ERK) and the nuclear factor kappa B (NF-κB) pathways by NPFF in these cells. NPFF rapidly and transiently stimulated ERK. H89, a selective inhibitor of cyclic AMP-dependent protein kinase A (PKA), inhibited the NPFF-activated ERK pathway, indicating the involvement of PKA in the NPFF-induced ERK activation. Down-regulation of nitric oxide synthases also attenuated NPFF-induced ERK activation, suggesting that a nitric oxide synthase-dependent pathway is involved. Moreover, the core upstream components of the NF-κB pathway were also significantly activated in response to NPFF, suggesting that the NF-κB pathway is involved in the signal transduction pathway of NPFF. Collectively, these data demonstrate that nitric oxide synthases are involved in the signal transduction pathway of NPFF, and provide the first evidence for the interaction between NPFF and the NF-κB pathway. These advances in our interpretation of the NPFF pathway mechanism will aid the comprehensive understanding of its function and provide novel molecular insight for further study of the NPFF system.
机译:据报道,神经肽FF(NPFF)在调节各种生物过程中起重要作用。然而,很少有注意力集中在NPFF的下游信号转导途径上。在这里,我们使用内源性表达hNPFF2受体的分化成神经母细胞瘤细胞系dSH-SY5Y,来研究NPFF下游的信号转导。特别地,我们研究了NPFF在这些细胞中对细胞外信号调节蛋白激酶(ERK)和核因子κB(NF-κB)通路的调节。 NPFF快速而短暂地刺激ERK。 H89,环状AMP依赖性蛋白激酶A(PKA)的选择性抑制剂,抑制NPFF激活的ERK途径,表明PKA参与NPFF诱导的ERK激活。一氧化氮合酶的下调也减弱了NPFF诱导的ERK激活,表明涉及一氧化氮合酶依赖性途径。此外,NF-κB途径的核心上游组分也响应NPFF而被显着激活,表明NF-κB途径参与了NPFF的信号转导途径。这些数据共同表明一氧化氮合酶参与了NPFF的信号转导途径,并为NPFF和NF-κB途径之间的相互作用提供了第一个证据。我们对NPFF途径机制的解释的这些进展将有助于对其功能的全面理解,并为NPFF系统的进一步研究提供新颖的分子见解。

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