Wang Weidong, Struhl Gary
Howard Hughes Medical Institute, Department of Genetics and Development, Columbia University College of Physicians and Surgeons, 701 West 168th Street, New York, NY 10032, USA.
Development. 2004 Nov;131(21):5367-80. doi: 10.1242/dev.01413. Epub 2004 Oct 6.
Recent findings suggest that Delta/Serrate/Lag2 (DSL) signals activate Notch by an unprecedented mechanism that requires the ligands to be endocytosed in signal-sending cells to activate the receptor in signal-receiving cells. Here, we show that cells devoid of Epsin, a conserved adaptor protein for Clathrin-mediated endocytosis, behave normally except that they cannot send DSL signals. Surprisingly, we find that Epsin is not required for bulk endocytosis of DSL proteins. Instead, Epsin appears to be essential for targeting DSL proteins to a special endocytic pathway that they must enter to acquire signaling activity. We present evidence that DSL proteins must be mono-ubiquitinated to be targeted by Epsin to this pathway. Furthermore, we show that the requirements for both Epsin and mono-ubiquitination can be bypassed by introducing the internalization signal that mediates endocytosis and recycling of the Low Density Lipoprotein (LDL) receptor. We propose that Epsin is essential for DSL signaling because it targets mono-ubiquitinated DSL proteins to an endocytic recycling compartment that they must enter to be converted into active ligands. Alternatively Epsin may be required to target mono-ubiquitinated DSL proteins to a particular subclass of coated pits that have special properties essential for Notch activation.
最近的研究结果表明,Delta/Serrate/Lag2(DSL)信号通过一种前所未有的机制激活Notch,该机制要求配体在信号发送细胞中被内吞,从而在信号接收细胞中激活受体。在此,我们表明,缺乏Epsin(一种参与网格蛋白介导的内吞作用的保守衔接蛋白)的细胞表现正常,但它们无法发送DSL信号。令人惊讶的是,我们发现Epsin对于DSL蛋白的整体内吞作用并非必需。相反,Epsin似乎对于将DSL蛋白靶向一种特殊的内吞途径至关重要,DSL蛋白必须进入该途径才能获得信号活性。我们提供的证据表明,DSL蛋白必须被单泛素化才能被Epsin靶向到该途径。此外,我们表明,通过引入介导低密度脂蛋白(LDL)受体内吞和再循环的内化信号,可以绕过对Epsin和单泛素化的需求。我们提出,Epsin对于DSL信号传导至关重要,因为它将单泛素化的DSL蛋白靶向到一个内吞再循环区室,DSL蛋白必须进入该区室才能转化为活性配体。或者,可能需要Epsin将单泛素化的DSL蛋白靶向到一类具有特殊性质的被膜小窝,这些性质对于Notch激活至关重要。