Rath Oliver, Park Sungdae, Tang Hui-hui, Banfield Mark J, Brady R Leo, Lee Yie Chia, Dignam John D, Sedivy John M, Kolch Walter, Yeung Kam C
The Beatson institute for Cancer Research, Cancer Research UK Garscube Estate, Bearsden, Glasgow G61 1BD, UK.
Cell Signal. 2008 May;20(5):935-41. doi: 10.1016/j.cellsig.2008.01.012. Epub 2008 Jan 24.
The Raf-MEK-ERK pathway regulates many fundamental biological processes, and its activity is finely tuned at multiple levels. The Raf kinase inhibitory protein (RKIP) is a widely expressed negative modulator of the Raf-MEK-ERK signaling pathway. We have previously shown that RKIP inhibits the phosphorylation of MEK by Raf-1 through interfering with the formation of a kinase-substrate complex by direct binding to both Raf-1 and MEK. Here, we show that the evolutionarily conserved ligand-binding pocket of RKIP is required for its inhibitory activity towards the Raf-1 kinase mediated activation of MEK. Single amino acid substitutions of two of the conserved residues form the base and the wall of the pocket confers a loss-of-function phenotype on RKIP. Loss-of-function RKIP mutants still appear to bind to Raf-1. However the stability of the complexes formed between mutants and the N-region Raf-1 phosphopeptide were drastically reduced. Our results therefore suggest that the RKIP conserved pocket may constitute a novel phosphoamino-acid binding motif and is absolutely required for RKIP function.
Raf-MEK-ERK信号通路调控许多基本生物学过程,其活性在多个水平上受到精细调节。Raf激酶抑制蛋白(RKIP)是Raf-MEK-ERK信号通路中广泛表达的负性调节因子。我们之前已经表明,RKIP通过直接结合Raf-1和MEK,干扰激酶-底物复合物的形成,从而抑制Raf-1对MEK的磷酸化作用。在此,我们表明RKIP进化上保守的配体结合口袋对于其抑制Raf-1激酶介导的MEK激活的活性是必需的。构成口袋底部和壁的两个保守残基的单氨基酸取代赋予RKIP功能丧失表型。功能丧失的RKIP突变体似乎仍能与Raf-1结合。然而,突变体与N区域Raf-1磷酸肽形成的复合物的稳定性大幅降低。因此,我们的结果表明,RKIP保守口袋可能构成一种新的磷酸氨基酸结合基序,并且是RKIP功能绝对必需的。