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A Novel Conserved Phosphotyrosine Motif in the Drosophila Fibroblast Growth Factor Signaling Adaptor Dof with a Redundant Role in Signal Transmission▿

机译:果蝇成纤维细胞生长因子信号转接头自由度中的一种新型保守的磷酸酪氨酸基序,在信号传递中具有冗余作用Role

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摘要

The fibroblast growth factor receptor (FGFR) signals through adaptors constitutively associated with the receptor. In Drosophila melanogaster, the FGFR-specific adaptor protein Downstream-of-FGFR (Dof) becomes phosphorylated upon receptor activation at several tyrosine residues, one of which recruits Corkscrew (Csw), the Drosophila homolog of SHP2, which provides a molecular link to mitogen-activated protein kinase (MAPK) activation. However, the Csw pathway is not the only link from Dof to MAPK. In this study, we identify a novel phosphotyrosine motif present in four copies in Dof and also found in other insect and vertebrate signaling molecules. We show that these motifs are phosphorylated and contribute to FGF signal transduction. They constitute one of three sets of phosphotyrosines that act redundantly in signal transmission: (i) a Csw binding site, (ii) four consensus Grb2 recognition sites, and (iii) four novel tyrosine motifs. We show that Src64B binds to Dof and that Src kinases contribute to FGFR-dependent MAPK activation. Phosphorylation of the novel tyrosine motifs is required for the interaction of Dof with Src64B. Thus, Src64B recruitment to Dof through the novel phosphosites can provide a new link to MAPK activation and other cellular responses. This may give a molecular explanation for the involvement of Src kinases in FGF-dependent developmental events.
机译:成纤维细胞生长因子受体(FGFR)通过与该受体组成性结合的衔接子发出信号。在果蝇中,FGFR特异的衔接蛋白FGFR下游(Dof)在几个酪氨酸残基上被受体激活后被磷酸化,其中一个募集了Corkscrew(Csw),这是SHP2的果蝇同源物,它提供了与有丝分裂原的分子连接激活的蛋白激酶(MAPK)激活。但是,Csw途径并不是从Dof到MAPK的唯一链接。在这项研究中,我们确定了一种新的磷酸酪氨酸基序,它以4个拷贝出现在Dof中,也存在于其他昆虫和脊椎动物信号分子中。我们表明,这些图案被磷酸化并有助于FGF信号转导。它们构成了在信号传递中重复起作用的三组磷酸酪氨酸之一:(i)Csw结合位点,(ii)四个共有Grb2识别位点,和(iii)四个新颖的​​酪氨酸基序。我们显示Src64B绑定到Dof,并且Src激酶有助于FGFR依赖性MAPK激活。新的酪氨酸基序的磷酸化是Dof与Src64B相互作用的必需条件。因此,通过新的磷酸位点将Src64B募集到Dof可以提供与MAPK激活和其他细胞应答的新链接。这可能为Src激酶参与FGF依赖的发育事件提供分子解释。

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