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Differential involvement of H- and K-Ras in Raf-1 activation determines the role of calmodulin in MAPK signaling

机译:H-和K-Ras在Raf-1激活中的差异参与决定了钙调蛋白在MAPK信号传导中的作用

摘要

We have previously demonstrated that inhibition of calmodulin (CaM) and the concomitant reduction of PI3K interfere with H-Ras-mediated activation of Raf-1 [1]. In the present study, we show that CaM has completely opposite effects on K-Ras-mediated Raf-1 activation. The differential contribution of CaM in the regulation of Raf-1 kinase activity via K- or H-Ras correlates with the stimulatory or inhibitory effect of CaM on MAPK phosphorylation depending on the cell type analyzed. FRET microscopy and biochemical analysis show that inhibition of CaM increases K-Ras-GTP levels and consequently its association with Raf-1. Though inhibition of CaM, using the CaM antagonist W-13, significantly increased Raf-1 activation by K-Ras-GTP, MAPK activation downstream K-Ras/Raf-1 was strongly reduced in COS-1 and several other cell lines. In contrast, in other cell lines such as NIH3T3-wt8, W-13-mediated inhibition of CaM increased Raf-1 activity, but resulted in an increase in MAPK phosphorylation. These findings suggest that modulation of K-Ras activity via CaM regulates MAPK signaling only in certain cell types. In support of this hypothesis, the comparison of H- and K-Ras expression, GTP loading and Raf-1 interaction in COS-1 and NIH3T3-wt8 suggests that the overall role of CaM in MAPK signal output is determined by the ratio of activated H- and K-Ras and the cell-specific contribution of each isoform in Raf-1 activation. © 2009 Elsevier Inc. All rights reserved.
机译:我们以前已经证明,钙调蛋白(CaM)的抑制和PI3K的同时降低会干扰H-Ras介导的Raf-1的激活[1]。在本研究中,我们表明CaM对K-Ras介导的Raf-1激活具有完全相反的作用。 CaM通过K-或H-Ras调节Raf-1激酶活性的不同贡献与CaM对MAPK磷酸化的刺激或抑制作用有关,具体取决于所分析的细胞类型。 FRET显微镜和生化分析表明,抑制CaM会增加K-Ras-GTP的水平,并因此使其与Raf-1缔合。尽管使用CaM拮抗剂W-13抑制CaM,可显着增加K-Ras-GTP对Raf-1的激活,但在COS-1和其他一些细胞系中,下游K-Ras / Raf-1的MAPK激活却大大降低。相反,在其他细胞系(如NIH3T3-wt8)中,W-13介导的CaM抑制作用增加了Raf-1活性,但导致MAPK磷酸化增加。这些发现表明,通过CaM调节K-Ras活性仅在某些细胞类型中调节MAPK信号传导。为支持该假设,比较COS-1和NIH3T3-wt8中H-和K-Ras表达,GTP负载和Raf-1相互作用,表明CaM在MAPK信号输出中的总体作用取决于激活的比率H-Ras和K-Ras以及Raf-1激活中每种同工型的细胞特异性贡献。 ©2009 Elsevier Inc.保留所有权利。

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