Sino-French Hoffmann Institute, School of Basic Medical Sciences, Guangzhou Medical University, Guangzhou, China.
Adv Exp Med Biol. 2020;1218:59-75. doi: 10.1007/978-3-030-34436-8_4.
Notch signaling exerts multiple important functions in various developmental processes, including cell differentiation and cell proliferation, while mis-regulation of this pathway results in a variety of complex diseases, such as cancer and developmental defects. The simplicity of the Notch pathway in Drosophila melanogaster, in combination with the availability of powerful genetics, makes this an attractive model for studying the fundamental mechanisms of how Notch signaling is regulated and how it functions in various cellular contexts. Recently, increasing evidence for epigenetic control of Notch signaling reveals the intimate link between epigenetic regulators and Notch signaling pathway. In this chapter, we summarize the research advances of Notch and CAF-1 in Drosophila development and the epigenetic regulation mechanisms of Notch signaling activity by CAF-1 as well as other epigenetic modification machineries, which enables Notch to orchestrate different biological inputs and outputs in specific cellular contexts.
Notch 信号通路在各种发育过程中发挥着多种重要功能,包括细胞分化和细胞增殖,而该通路的失调会导致多种复杂疾病,如癌症和发育缺陷。果蝇中的 Notch 信号通路具有简单性,同时又具备强大的遗传学方法,使其成为研究 Notch 信号如何被调控以及在各种细胞环境中发挥作用的基本机制的理想模型。最近,越来越多的证据表明 Notch 信号通路受到表观遗传控制,揭示了表观遗传调控因子与 Notch 信号通路之间的密切联系。在本章中,我们总结了 Notch 和 CAF-1 在果蝇发育中的研究进展,以及 CAF-1 和其他表观遗传修饰机制对 Notch 信号活性的调控机制,这使得 Notch 能够在特定的细胞环境中协调不同的生物输入和输出。