Institut de Biologie de Valrose - iBV, Centre de Biochimie, Université Nice Sophia Antipolis, CNRS UMR7277, INSERM 1091, Parc Valrose, 06108 Nice Cedex 2, France.
Institut de Biologie de Valrose - iBV, Centre de Biochimie, Université Nice Sophia Antipolis, CNRS UMR7277, INSERM 1091, Parc Valrose, 06108 Nice Cedex 2, France.
Dev Cell. 2015 Feb 9;32(3):290-303. doi: 10.1016/j.devcel.2014.12.004. Epub 2015 Jan 22.
The proteins of the Hedgehog (Hh) family are secreted proteins exerting short- and long-range control over various cell fates in developmental patterning. The Hh gradient in Drosophila wing imaginal discs consists of apical and basolateral secreted pools, but the mechanisms governing the overall establishment of the gradient remain unclear. We investigated the relative contributions of endocytosis and recycling to control the Hh gradient. We show that, upon its initial apical secretion, Hh is re-internalized. We examined the effect of the resistance-nodulation-division transporter Dispatched (Disp) on long-range Hh signaling and unexpectedly found that Disp is specifically required for apical endocytosis of Hh. Re-internalized Hh is then regulated in a Rab5- and Rab4-dependent manner to ensure its long-range activity. We propose that Hh-producing cells integrate endocytosis and recycling as two instrumental mechanisms contributing to regulate the long-range activity of Hh.
Hedgehog(Hh)家族的蛋白质是分泌蛋白,在发育模式中对各种细胞命运进行短程和长程控制。果蝇翅膀 imaginal 盘的 Hh 梯度由顶端和基底分泌池组成,但控制梯度整体建立的机制仍不清楚。我们研究了内吞作用和再循环对控制 Hh 梯度的相对贡献。我们表明,Hh 在最初的顶端分泌后被重新内化。我们检查了抵抗-结节-分裂转运蛋白 Dispatched(Disp)对长程 Hh 信号的影响,出乎意料地发现 Disp 专门用于 Hh 的顶端内吞作用。然后,再内化的 Hh 受到 Rab5 和 Rab4 的调节,以确保其长程活性。我们提出 Hh 产生细胞将内吞作用和再循环整合为两种有助于调节 Hh 长程活性的重要机制。