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Rapid and transient activation of the ERK MAPK signalling pathway by macrophage migration inhibitory factor (MIF) and dependence on JAB1/CSN5 and Src kinase activity

机译:巨噬细胞迁移抑制因子(MIF)对ERK MAPK信号通路的快速和瞬时激活以及对JAB1 / CSN5和Src激酶活性的依赖性

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摘要

Macrophage migration inhibitory factor (MIF) is a 12.5 kD polypeptide that serves as a critical regulator of cell functions such as gene expression, proliferation or apoptosis. However, the signal transduction pathways through which MIF takes part in cellular regulation are only incompletely understood. MIF leads to CD74-dependent "sustained" activation of ERK1/2 MAPK, but MIF's role in "transient" ERK activation and the involved upstream pathways are unknown. Here we report that the transient ERK pathway was markedly activated by MIF. This effect involved the phosphorylation and activation of Raf-1, MEK, ERK, and Elk-1. Of note, rapid and transient ERK phosphorylation by MIF was measurable in MIF-deficient cells, suggesting that MIF acted in a non-autocrine fashion. Applying the inhibitor genistein, a tyrosine kinase (TPK) activity was identified as a critical upstream signalling event in MIF-induced transient ERK signalling. Experiments using the Src kinase inhibitor PP2 indicated that the involved TPK was a Src-type tyrosine kinase. A role for an upstream Src kinase was proven by applying Src-deficient cells which did not exhibit transient ERK activation upon treatment with MIF, but in which MIF-induced ERK signalling could be restored by re-expressing Src. Intriguingly, JAB1/CSN5, a signalosome component, cellular binding protein of MIF and regulator of cell proliferation and survival, had a marked, yet dual, effect on MIF-induced ERK signalling. JAB1 overexpression inhibited sustained, but not transient, ERK phosphorylation. By contrast, JAB1-knock-down by siRNA revealed that minimum JAB I levels were necessary for transient activation of ERK by MIF. In conclusion, MIF rapidly and transiently activates the ERK pathway, an effect that has not been recognized previously. This signalling pathway involves the upstream activation of a Src-type kinase and is co-regulated by the cellular MIF binding protein JAB1/CSN5. Our study thus has unravelled a novel MIF-driven signalling pathway and an intricate regulatory system involving extra- and possibly intracellular MIF, and which likely critically participates in controlling cell proliferation and survival. (c) 2005 Elsevier Inc. All rights reserved.
机译:巨噬细胞迁移抑制因子(MIF)是一种12.5 kD多肽,可作为细胞功能(如基因表达,增殖或凋亡)的关键调节剂。但是,MIF参与细胞调节的信号转导途径尚不完全清楚。 MIF导致CD74依赖性的ERK1 / 2 MAPK的“持续”激活,但是MIF在“瞬时” ERK激活和涉及的上游途径中的作用尚不清楚。在这里,我们报告说,瞬时ERK通路被MIF明显激活。该作用涉及Raf-1,MEK,ERK和Elk-1的磷酸化和激活。值得注意的是,在缺乏MIF的细胞中,可以测量到MIF迅速而短暂的ERK磷酸化,表明MIF以非自分泌的方式起作用。应用抑制剂染料木黄酮,酪氨酸激酶(TPK)活性被确定为MIF诱导的瞬时ERK信号传导中的关键上游信号传导事件。使用Src激酶抑制剂PP2进行的实验表明,涉及的TPK是Src型酪氨酸激酶。通过应用Src缺陷型细胞证明了上游Src激酶的作用,该细胞在用MIF处理后不会表现出短暂的ERK活化,但是其中MIF诱导的ERK信号传导可以通过重新表达Src来恢复。有趣的是,JAB1 / CSN5是一种信号体成分,是MIF的细胞结合蛋白,是细胞增殖和存活的调节剂,对MIF诱导的ERK信号传导具有显着的双重作用。 JAB1过表达抑制持续但不是短暂的ERK磷酸化。相比之下,通过siRNA进行JAB1敲低表明,最低的JAB I水平对于MIF短暂激活ERK是必需的。总之,MIF可以迅速而短暂地激活ERK途径,这一作用是以前未曾认识到的。此信号传导途径涉及Src型激酶的上游激活,并由细胞MIF结合蛋白JAB1 / CSN5共同调控。因此,我们的研究揭示了一种新颖的MIF驱动的信号通路和涉及细胞外MIF的复杂调控系统,并且可能关键参与控制细胞的增殖和存活。 (c)2005 Elsevier Inc.保留所有权利。

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