Program in Developmental Biology, Baylor College of Medicine, Houston, TX, USA.
Curr Top Dev Biol. 2010;92:165-200. doi: 10.1016/S0070-2153(10)92005-X.
Notch signaling occurs through direct interaction between Notch, the receptor, and its ligands, presented on the surface of neighboring cells. Endocytosis has been shown to be essential for Notch signal activation in both signal-sending and signal-receiving cells, and numerous genes involved in vesicle trafficking have recently been shown to act as key regulators of the pathway. Defects in vesicle trafficking can lead to gain- or loss-of-function defects in a context-dependent manner. Here, we discuss how endocytosis and vesicle trafficking regulate Notch signaling in both signal-sending and signal-receiving cells. We will introduce the key players in different trafficking steps, and further illustrate how they impact the signal outcome. Some of these players act as general factors and modulate Notch signaling in all contexts, whereas others modulate signaling in a context-specific fashion. We also discuss Notch signaling during mechanosensory organ development in the fly to exemplify how endocytosis and vesicle trafficking are effectively used to determine correct cell fates. In summary, endocytosis plays an essential role in Notch signaling, whereas intracellular vesicle trafficking often plays a context-dependent or regulatory role, leading to divergent outcomes in different developmental contexts.
Notch 信号通过 Notch 受体与其配体在相邻细胞表面的直接相互作用发生。内吞作用已被证明对信号发送和信号接收细胞中的 Notch 信号激活至关重要,最近有大量涉及囊泡运输的基因被证明是该途径的关键调节剂。囊泡运输缺陷可导致功能获得或功能丧失,且具有上下文依赖性。在这里,我们讨论了内吞作用和囊泡运输如何在信号发送和信号接收细胞中调节 Notch 信号。我们将介绍不同运输步骤中的关键参与者,并进一步说明它们如何影响信号结果。其中一些参与者作为一般因子在所有情况下调节 Notch 信号,而另一些则以特定于上下文的方式调节信号。我们还讨论了果蝇机械感受器器官发育过程中的 Notch 信号,以举例说明内吞作用和囊泡运输如何有效地用于确定正确的细胞命运。总之,内吞作用在 Notch 信号中起关键作用,而细胞内囊泡运输通常起上下文依赖性或调节作用,导致不同发育环境中的结果不同。