Department of Cell and Molecular Biology, St. Jude Children's Research Hospital, Memphis, United States.
Cell and Tissue Imaging Center, St. Jude Children's Research Hospital, Memphis, United States.
Elife. 2021 Feb 11;10:e61432. doi: 10.7554/eLife.61432.
Morphogens function in concentration-dependent manners to instruct cell fate during tissue patterning. The cytoneme morphogen transport model posits that specialized filopodia extend between morphogen-sending and responding cells to ensure that appropriate signaling thresholds are achieved. How morphogens are transported along and deployed from cytonemes, how quickly a cytoneme-delivered, receptor-dependent signal is initiated, and whether these processes are conserved across phyla are not known. Herein, we reveal that the actin motor Myosin 10 promotes vesicular transport of Sonic Hedgehog (SHH) morphogen in mouse cell cytonemes, and that SHH morphogen gradient organization is altered in neural tubes of mice. We demonstrate that cytoneme-mediated deposition of SHH onto receiving cells induces a rapid, receptor-dependent signal response that occurs within seconds of ligand delivery. This activity is dependent upon a novel Dispatched (DISP)-BOC/CDON co-receptor complex that functions in ligand-producing cells to promote cytoneme occurrence and facilitate ligand delivery for signal activation.
形态发生素以浓度依赖的方式在组织模式形成过程中指导细胞命运。拟足形态发生素运输模型假设专门的丝状伪足在形态发生素发送和响应细胞之间延伸,以确保达到适当的信号阈值。形态发生素如何沿着拟足运输和从拟足中释放,受体依赖性信号被触发的速度有多快,以及这些过程是否在门之间保守,目前尚不清楚。在此,我们揭示肌球蛋白 10 促进了 Sonic Hedgehog (SHH)形态发生素在小鼠细胞拟足中的囊泡运输,并且 小鼠的神经管中 SHH 形态发生素梯度组织发生改变。我们证明,SHH 经拟足递送至接收细胞会诱导快速的、受体依赖性的信号反应,该反应在配体递送至细胞后的几秒钟内发生。这种活性依赖于一种新型的 Dispatched (DISP)-BOC/CDON 共受体复合物,该复合物在产生配体的细胞中发挥作用,以促进拟足发生并促进配体的递送以激活信号。