Institute for Biology I, Albert-Ludwigs-University of Freiburg, Hauptstrasse. 1, D-79104 Freiburg, Germany.
Nat Cell Biol. 2010 Jun;12(6):611-7. doi: 10.1038/ncb2064. Epub 2010 May 9.
In many instances during development, morphogens specify cell fates by forming concentration gradients. In the Drosophila melanogaster wing imaginal disc, Decapentaplegic (Dpp), a bone morphogenetic protein (BMP), functions as a long-range morphogen to control patterning and growth. Dpp is secreted from a stripe of cells at the anterior-posterior compartment boundary and spreads into both compartments to generate a characteristic BMP activity gradient. Ever since the identification of the morphogen activity of Dpp in the developing wing, the system has served as a paradigm to understand how long-range gradients are established and how cells respond to such gradients. Here we reveal the tight and direct connection of these two processes with the identification and characterization of pentagone (pent), a transcriptional target of BMP signalling encoding a secreted regulator of the pathway. Absence of pent in the wing disc causes a severe contraction of the BMP activity gradient resulting in patterning and growth defects. We show that Pent interacts with the glypican Dally to control Dpp distribution and provide evidence that proper establishment of the BMP morphogen gradient requires the inbuilt feedback loop embodied by Pent.
在发育的许多情况下,形态发生素通过形成浓度梯度来指定细胞命运。在果蝇的翅膀 imaginal 盘上,Decapentaplegic (Dpp),一种骨形态发生蛋白 (BMP),作为长距离形态发生素发挥作用,控制着模式和生长。Dpp 从前-后隔间边界的细胞条带分泌,并扩散到两个隔间中,以产生特征性的 BMP 活性梯度。自从 Dpp 在发育中的翅膀中的形态发生素活性被鉴定以来,该系统一直是一个范例,用于了解如何建立长距离梯度以及细胞如何响应这些梯度。在这里,我们通过鉴定和表征 pentagone (pent),一种 BMP 信号的转录靶标,编码该途径的分泌调节剂,揭示了这两个过程的紧密和直接联系。在翅膀盘中缺乏 pent 会导致 BMP 活性梯度严重收缩,从而导致模式和生长缺陷。我们表明,Pent 与 glypican Dally 相互作用以控制 Dpp 的分布,并提供证据表明,BMP 形态发生素梯度的正确建立需要由 Pent 体现的内置反馈环。