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What lies beneath: Hydra provides cnidarian perspectives into the evolution of FGFR docking proteins

机译:下面的是什么:Hydra为FGFR对接蛋白的演变提供了Cnidarian的视角

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Across the Bilateria, FGF/FGFR signaling is critical for normal development, and in both Drosophila and vertebrates, docking proteins are required to connect activated FGFRs with downstream pathways. While vertebrates use Frs2 to dock FGFR to the RAS/MAPK or PI3K pathways, the unrelated protein, downstream of FGFR (Dof/stumps/heartbroken), fulfills the corresponding function in Drosophila. To better understand the evolution of the signaling pathway downstream of FGFR, the available sequence databases were screened to identify Frs2, Dof, and other key pathway components in phyla that diverged early in animal evolution. While Frs2 homologues were detected only in members of the Bilateria, canonical Dof sequences (containing Dof, ankyrin, and SH2/SH3 domains) were present in cnidarians as well as bilaterians (but not in other animals or holozoans), correlating with the appearance of FGFR. Although these data suggested that Dof coupling might be ancestral, gene expression analysis in the cnidarian Hydra revealed that Dof is not upregulated in the zone of strong FGFRa and FGFRb expression at the bud base, where FGFR signaling controls detachment. In contrast, transcripts encoding other, known elements of FGFR signaling in Bilateria, namely the FGFR adaptors Grb2 and Crkl, which are acting downstream of Dof (and Frs2), as well as the guanyl nucleotide exchange factor Sos, and the tyrosine phosphatase Csw/Shp2, were strongly upregulated at the bud base. Our expression analysis, thus, identified transcriptional upregulation of known elements of FGFR signaling at the Hydra bud base indicating a highly conserved toolkit. Lack of transcriptional Dof upregulation raises the interesting question, whether Hydra FGFR signaling requires either of the docking proteins known from Bilateria.
机译:在二胺,FGF / FGFR信号传导对于正常发育至关重要,并且在果蝇和脊椎动物中,对接蛋白是用下游途径连接活性的FGFRS。脊椎动物使用FRS2到停顿FGFR到RAS / MAPK或PI3K途径,FGFR下游的无关蛋白质(DOF / Stumps / Chrellboken),达到了果蝇的相应功能。为了更好地理解FGFR下游信号通路的演变,筛选可用的序列数据库以鉴定在动物进化中早期发散的PHY1中的FRS2,DOF和其他关键途径组分。虽然仅在双玻璃的成员中检测到FRS2同源物,但典型DOF序列(含DOF,Ankyrin和SH2 / SH3结构域)存在于癌症中以及双子(但不是在其他动物或全洛洛中)中存在,与外观相关FGFR。虽然这些数据表明DOF偶联可能是祖先偶联,CNIDARD HYDRA中的基因表达分析表明,DOF在芽基的强FGFRA和FGFRB表达区域中未上调,其中FGFR信号控制脱离。相反,编码在双核苷酸中的FGFR信号传导的其他已知元素的转录物,即FGFR适配器GRB2和CRK1,其作用在DOF(和FRS2)的下游,以及胍基核苷酸交换因子SOS,以及酪氨酸磷酸酶CSC / SHP2,在芽基础上强烈上调。因此,我们的表达分析确定了在湿拉芽基的FGFR信号传导的已知元素的转录上调,表示高度保守的工具包。缺乏转录的DOF上调提高了有趣的问题,无论Hydra FGFR信号传导是否需要从二甲特里菌素中已知的任何一个粘合剂。

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