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Drosophila PDZ-GEF, a Guanine Nucleotide Exchange Factor for Rap1 GTPase, Reveals a Novel Upstream Regulatory Mechanism in the Mitogen-Activated Protein Kinase Signaling Pathway

机译:果蝇PDZ-GEF,Rap1 GTPase的鸟嘌呤核苷酸交换因子,揭示了在有丝分裂原激活的蛋白激酶信号通路中的新型上游调控机制。

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PDZ-GEF is a novel guanine nucleotide exchange factor for Rap1 GTPase. Here we isolated Drosophila melanogaster PDZ-GEF (dPDZ-GEF), which contains the all-conserved domains of mammalian and nematode PDZ-GEF including cyclic nucleotide monophosphate-binding, Ras exchange motif, PDZ, RA, and GEF domains. dPDZ-GEF loss-of-function mutants were defective in the development of various organs including eye, wing, and ovary. Many of these phenotypes are strikingly similar to the phenotype of the rolled mutant, implying that dPDZ-GEF functions upstream of the mitogen-activated protein (MAP) kinase pathway. Indeed, we found that dPDZ-GEF is specifically involved in photoreceptor cell differentiation, facilitating its neuronal fate via activation of the MAP kinase pathway. Rap1 was found to link dPDZ-GEF to the MAP kinase pathway; however, Ras was not involved in the regulation of the MAP kinase pathway by dPDZ-GEF and actually had an inhibitory function. The analyses of ovary development in dPDZ-GEF-deficient mutants also demonstrated another role of dPDZ-GEF independent of the MAP kinase signaling pathway. Collectively, our findings identify dPDZ-GEF as a novel upstream regulator of various morphogenetic pathways and demonstrate the presence of a novel, Ras-independent mechanism for activating the MAP kinase signaling pathway.
机译:PDZ-GEF是Rap1 GTPase的新型鸟嘌呤核苷酸交换因子。在这里,我们分离出了果蝇PDZ-GEF(dPDZ-GEF),其中包含哺乳动物和线虫PDZ-GEF的所有保守结构域,包括环状核苷酸单磷酸结合,Ras交换基序,PDZ,RA,和GEF域。 dPDZ-GEF功能丧失的突变体在各种器官(包括眼,翼和卵巢)的发育中均存在缺陷。这些表型中的许多非常类似于 rolled 突变体的表型,这表明dPDZ-GEF在有丝分裂原活化蛋白(MAP)激酶途径的上游起作用。确实,我们发现dPDZ-GEF特别参与感光细胞的分化,通过激活MAP激酶途径促进其神经元命运。发现Rap1将dPDZ-GEF连接到MAP激酶途径。然而,Ras并不参与dPDZ-GEF对MAP激酶途径的调节,实际上具有抑制功能。 dPDZ-GEF缺陷型突变体卵巢发育的分析还证明了dPDZ-GEF的另一个作用独立于MAP激酶信号传导途径。总的来说,我们的发现将dPDZ-GEF鉴定为各种形态发生途径的新型上游调节剂,并证明了存在新颖的,与Ras无关的机制来激活MAP激酶信号传导途径。

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