Kleemann R, Hausser A, Geiger G, Mischke R, Burger-Kentischer A, Flieger O, Johannes F J, Roger T, Calandra T, Kapurniotu A, Grell M, Finkelmeier D, Brunner H, Bernhagen J
Laboratory of Biochemistry/Institute for Interfacial Engineering, University of Stuttgart, Germany.
Nature. 2000 Nov 9;408(6809):211-6. doi: 10.1038/35041591.
Cytokines are multifunctional mediators that classically modulate immune activity by receptor-mediated pathways. Macrophage migration inhibitory factor (MIF) is a cytokine that has a critical role in several inflammatory conditions but that also has endocrine and enzymatic functions. The molecular targets of MIF action have so far remained unclear. Here we show that MIF specifically interacts with an intracellular protein, Jab1, which is a coactivator of AP-1 transcription that also promotes degradation of the cyclin-dependent kinase inhibitor p27Kip1 (ref. 10). MIF colocalizes with Jab1 in the cytosol, and both endogenous and exogenously added MIF following endocytosis bind Jab1. MIF inhibits Jab1- and stimulus-enhanced AP-1 activity, but does not interfere with the induction of the transcription factor NFkappaB. Jab1 activates c-Jun amino-terminal kinase (JNK) activity and enhances endogenous phospho-c-Jun levels, and MIF inhibits these effects. MIF also antagonizes Jab1-dependent cell-cycle regulation by increasing p27Kip1 expression through stabilization of p27Kip1 protein. Consequently, Jab1-mediated rescue of fibroblasts from growth arrest is blocked by MIF. Amino acids 50-65 and Cys 60 of MIF are important for Jab1 binding and modulation. We conclude that MIF may act broadly to negatively regulate Jab1-controlled pathways and that the MIF-Jab1 interaction may provide a molecular basis for key activities of MIF.
细胞因子是多功能介质,传统上通过受体介导的途径调节免疫活性。巨噬细胞移动抑制因子(MIF)是一种细胞因子,在多种炎症性疾病中起关键作用,但也具有内分泌和酶促功能。迄今为止,MIF作用的分子靶点仍不清楚。在此我们表明,MIF特异性地与一种细胞内蛋白Jab1相互作用,Jab1是AP-1转录的共激活因子,也促进细胞周期蛋白依赖性激酶抑制剂p27Kip1的降解(参考文献10)。MIF与Jab1在细胞质中共定位,内吞后内源性和外源性添加的MIF均与Jab1结合。MIF抑制Jab1和刺激增强的AP-1活性,但不干扰转录因子NFκB的诱导。Jab1激活c-Jun氨基末端激酶(JNK)活性并提高内源性磷酸化c-Jun水平,而MIF抑制这些作用。MIF还通过稳定p27Kip1蛋白增加p27Kip1表达来拮抗Jab1依赖性细胞周期调控。因此,MIF阻断了Jab1介导的成纤维细胞从生长停滞中的挽救。MIF的第50-65位氨基酸和Cys 60对于Jab1结合和调节很重要。我们得出结论,MIF可能广泛地负向调节Jab1控制的途径,并且MIF-Jab1相互作用可能为MIF的关键活性提供分子基础。