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Dual functions of the heartless fibroblast growth factor receptor indevelopment of the Drosophila embryonic mesoderm

机译:无心成纤维细胞生长因子受体在果蝇胚胎中胚层发育中的双重功能

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摘要

The Drosophila embryonic mesoderm forms by invagination of the ventral-most blastoderm cells. Subsequent development of this germ layer involves the dorsolateral migration of the internalized cells and expansion by cell division, followed by the specification of particular cell fates through the coordinate actions of both intrinsic and extrinsic regulatory mechanisms. The latter include several intercellular signals that function across germ layers. These processes combine to generate a diversity of mesodermal subtypes, including the cardial and pericardial cells of the heart or dorsal vessel, a complete set of somatic muscle founders each with its unique identify a population of cells that form the visceral musculature, and other cells that develop into hemocytes and the fat body. Here, we review recent evidence for the involvement of a Fibroblast growth factor receptor (FGFR) encoded by the heartless (htl) gene in early directional migration of the Drosophila mesoderm. In addition, we provide new data that 1) demonstrate a second role for Htl in promoting the specification of the precursors to certain cardiac and somatic muscle cells in the Drosophila embryo, independent of its cell migration function, 2) suggest that Ras and at least one other signal transduction pathway act downstream of Htl, and 3) establish a functional relationship between the Ras pathway and Tinman (Tin), a homeodomain factor that is essential for specifying some of the same dorsal mesodermal cells that are dependent on Htl. Finally, parallels between requirements for FGFR signaling in Drosophila and vertebrate mesoderm development are considered.
机译:果蝇胚胎中胚层通过最腹侧胚盘细胞的入侵而形成。此胚层的后续发育涉及内在化细胞的背外侧迁移和通过细胞分裂的扩增,然后通过内在和外在调节机制的协调作用确定特定细胞的命运。后者包括跨胚层起作用的几种细胞间信号。这些过程共同产生多种中胚层亚型,包括心脏或背血管的心脏和心包膜细胞,一整套完整的体细胞奠基人,每个人都有其独特的身份,可识别形成内脏肌肉组织的细胞群,以及其他发育成血细胞和脂肪体。在这里,我们审查了由无心(htl)基因编码的成纤维细胞生长因子受体(FGFR)参与果蝇中胚层的早期定向迁移的最新证据。此外,我们提供了新的数据,1)证明了Htl在促进果蝇胚胎中某些心肌细胞和体细胞的前体指标上的第二种作用,而与细胞迁移功能无关,2)表明Ras和至少另一个信号转导途径在Htl的下游起作用,并且3)在Ras途径和Tinman(Tin)之间建立功能关系,Tinman是一个同源域因子,对于确定某些依赖于Htl的相同的背面中胚层细胞至关重要。最后,考虑了果蝇中FGFR信号转导的要求与脊椎动物中胚层发育之间的相似性。

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