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TGFβ signaling in Tribolium: vertebrate-like components in a beetle

机译:Tribolium中的TGFβ信号转导:甲虫中的脊椎动物样成分

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The cytokines of the TGFβ superfamily are highly conserved in evolution and elicit a diverse range of cellular responses in all metazoa. In Drosophila, the signaling pathways of the two TGFβ subfamilies, Activins and Bone Morphogenetic Proteins (BMPs), have been well studied. To address the question of whether the findings from Drosophila are representative of insects in general, we analyzed the components of TGFβ-signaling present in the genome of the beetle Tribolium castaneum. We were able to identify orthologs of the BMPs Decapentaplegic and Glass bottom boat, of the Activins Activinβ and Dawdle, as well as orthologs of the less well-known ligands Myoglianin and Maverick, together with orthologs of all TGFβ receptors and cytoplasmic signal transducers present in Drosophila. This indicates that the diversity of TGFβ signaling components is generally well conserved between Drosophila and Tribolium. However, the genome of the beetle—and of the bee Apis mellifera—lacks an ortholog of the Drosophila BMP Screw but does contain a vertebrate-like BMP10 homolog which is not found in Drosophila. Concerning BMP inhibitors, Tribolium displays an even more vertebrate-like ensemble of components. We found two orthologs of the vertebrate DAN family, Dan and Gremlin, and show embryonic expression of a vertebrate-like BAMBI ortholog, all of which are absent in Drosophila. This suggests that Tribolium might have retained a more ancestral composition of TGFβ signaling components and that TGFβ signaling underwent considerable change in the Drosophila lineage. Tribolium is an excellent model to study the function of these ancestral signaling components in insects.
机译:TGFβ超家族的细胞因子在进化中高度保守,并在所有后生动物中引起各种各样的细胞反应。在果蝇中,已经对两个TGFβ亚家族,激活素和骨形态发生蛋白(BMP)的信号通路进行了深入研究。为了解决果蝇的发现是否通常代表昆虫的问题,我们分析了甲虫Tribolium castaneum基因组中存在的TGFβ信号的组成。我们能够鉴定出BMPs的功能,例如:角膜功能不全和玻璃底舟的直系同源物,以及激活素Activinβ和Dawdle的直系同源物,以及鲜为人知的配体Myoglianin和Maverick的直系同源物,以及所有TGFβ受体和细胞质信号转导子的直系同源物。果蝇。这表明在果蝇和Tribolium之间,TGFβ信号转导成分的多样性通常被很好地保守。但是,甲虫和蜜蜂蜜蜂的基因组缺少果蝇BMP螺丝的直系同源基因,但确实含有在果蝇中未发现的脊椎动物样BMP10同源物。关于BMP抑制剂,Tribolium表现出甚至更多的类似于脊椎动物的成分集合。我们发现了脊椎动物DAN家族的两个直系同源物Dan和Gremlin,并显示了果蝇中不存在的脊椎动物类BAMBI直系同源物的胚胎表达。这表明Tribolium可能保留了更祖先的TGFβ信号传导成分,而TGFβ信号传导在果蝇谱系中发生了可观的变化。 Tribolium是研究昆虫中这些祖传信号成分功能的极佳模型。

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