首页> 美国卫生研究院文献>Genetics >Transgenic analysis of the Smad family of TGF-beta signal transducers in Drosophila melanogaster suggests new roles and new interactions between family members.
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Transgenic analysis of the Smad family of TGF-beta signal transducers in Drosophila melanogaster suggests new roles and new interactions between family members.

机译:对果蝇中TGF-β信号转导子的Smad家族的转基因分析表明家族成员之间具有新的作用和新的相互作用。

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摘要

Smad signal transducers are required for transforming growth factor-beta-mediated developmental events in many organisms including humans. However, the roles of individual human Smad genes (hSmads) in development are largely unknown. Our hypothesis is that an hSmad performs developmental roles analogous to those of the most similar Drosophila Smad gene (dSmad). We expressed six hSmad and four dSmad transgenes in Drosophila melanogaster using the Gal4/UAS system and compared their phenotypes. Phylogenetically related human and Drosophila Smads induced similar phenotypes supporting the hypothesis. In contrast, two nearly identical hSmads generated distinct phenotypes. When expressed in wing imaginal disks, hSmad2 induced oversize wings while hSmad3 induced cell death. This observation suggests that a very small number of amino acid differences, between Smads in the same species, confer distinct developmental roles. Our observations also suggest new roles for the dSmads, Med and Dad, in dActivin signaling and potential interactions between these family members. Overall, the study demonstrates that transgenic methods in Drosophila can provide new information about non-Drosophila members of developmentally important multigene families.
机译:在包括人类在内的许多生物中,Smad信号传感器是转化生长因子-β介导的发育事件所必需的。然而,人类Smad基因(hSmads)在发育中的作用尚不清楚。我们的假设是,hSmad具有与最相似的果蝇Smad基因(dSmad)类似的发育作用。我们使用Gal4 / UAS系统在果蝇中表达了六个hSmad和四个dSmad转基因,并比较了它们的表型。系统发育相关的人和果蝇Smads诱导相似的表型,支持该假设。相反,两个几乎相同的hSmads产生了不同的表型。当在机翼假想盘中表达时,hSmad2诱导过大的机翼,而hSmad3诱导细胞死亡。该观察结果表明,同一物种中Smads之间的氨基酸差异非常小,赋予它们不同的发育作用。我们的观察结果还暗示了dSmads,Med和Dad在dActivin信号传导以及这些家族成员之间潜在相互作用中的新作用。总体而言,该研究表明果蝇中的转基因方法可以提供有关具有重要发展意义的多基因家族的非果蝇成员的新信息。

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