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A positive role for Short gastrulation in modulating BMP signaling during dorsoventral patterning in the Drosophila embryo.

机译:在果蝇胚胎的背腹模式期间,短胃泌调节在调节BMP信号中起积极作用。

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摘要

Positional information in the dorsoventral axis of the Drosophila embryo is encoded by a BMP activity gradient formed by synergistic signaling between the BMP family members Decapentaplegic (DPP) and Screw (SCW). short gastrulation (sog), which is functionally homologous to Xenopus Chordin, is expressed in the ventrolateral regions of the embryo and has been shown to act as a local antagonist of BMP signaling. Here we demonstrate that SOG has a second function, which is to promote BMP signaling on the dorsal side of the embryo. We show that a weak, homozygous-viable sog mutant is enhanced to lethality by reduction in the activities of the Smad family members Mad or Medea, and that the lethality is caused by defects in the molecular specification and subsequent cellular differentiation of the dorsal-most cell type, the amnioserosa. While previous data had suggested that the negative function of SOG is directed against SCW, we present data that suggests that the positive activity of SOG is directed towards DPP. We demonstrate that Chordin shares the same apparent ligand specificity as does SOG, preferentially inhibiting SCW but not DPP activity. However, in Drosophila assays Chordin does not have the same capacity to elevate BMP signaling as does SOG, identifying a functional difference in the otherwise well conserved process of dorsoventral pattern formation in arthropods and chordates.
机译:果蝇胚胎的腹背轴上的位置信息由BMP活性梯度编码,该BMP活性梯度是由BMP家庭成员Decapentaplegic(DPP)和Screw(SCW)之间的协同信号传导形成的。功能上与非洲爪蟾Chordin同源的短胃成膜(sog)在胚胎的腹侧区域表达,并已显示出可作为BMP信号传导的局部拮抗剂。在这里,我们证明SOG具有第二个功能,即促进胚胎背侧的BMP信号传导。我们表明弱,纯合生存的sog突变体通过减少Smad家族成员Mad或Medea的活性而增强了致死性,并且致死性是由分子学上的缺陷和随后的背侧细胞分化引起的细胞类型,羊膜。尽管以前的数据表明SOG的负功能是针对SCW,但我们提供的数据表明SOG的正活性是针对DPP。我们证明,Chordin与SOG共享相同的表观配体特异性,优先抑制SCW但不抑制DPP活性。然而,在果蝇试验中,Chordin不能像SOG一样具有增强BMP信号传导的能力,从而可以在节肢动物和翼手足动物背腹模式形成的其他方面得到很好保存的过程中发现功能差异。

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