Fujian Key Laboratory of Translational Research in Cancer and Neurodegenerative Diseases, The School of Basic Medical Sciences, Fujian Medical University, Fuzhou, Fujian 350122, China.
Fujian Key Laboratory of Translational Research in Cancer and Neurodegenerative Diseases, The School of Basic Medical Sciences, Fujian Medical University, Fuzhou, Fujian 350122, China.
Biomed Pharmacother. 2023 Oct;166:115383. doi: 10.1016/j.biopha.2023.115383. Epub 2023 Aug 27.
The functional complexity of the central nervous system (CNS) is unparalleled in living organisms. It arises from neural crest-derived cells that migrate by the exact route, leading to the formation of a complex network of neurons and glial cells. Recent studies have shown that novel crosstalk exists between the Notch1 and Nrf2 pathways and is associated with many neurological diseases. The Notch1-Nrf2 axis may act on nervous system development, and the molecular mechanism has recently been reported. In this review, we summarize the essential structure and function of the CNS. The significance of interactions between signaling pathways and between developmental processes like proliferation, apoptosis and migration in ensuring the correct development of the CNS is also presented. We primarily focus on research concerning possible mechanism of interaction between Notch1 and Nrf2 and the functions of Notch1-Nrf2 in neurons. There may be a direct interaction between Notch1 and NRF2, which is closely related to the crosstalk that occurs between them. The significance and potential applications of the Notch1-Nrf2 axis in abnormal development of the nervous system are been highlighten. We also discuss the molecular mechanisms by which the Notch1-Nrf2 axis controls the apoptosis, antioxidant pathway and differentiation of neurons to modulate the development of the nervous system. This information will lead to a better understanding of Notch1-Nrf2 axis signaling pathways in the nervous system and may facilitate the development of new therapeutic strategies.
中枢神经系统 (CNS) 的功能复杂性在所有生物中都是无与伦比的。它源于神经嵴衍生细胞,这些细胞通过精确的途径迁移,导致神经元和神经胶质细胞的复杂网络形成。最近的研究表明,Notch1 和 Nrf2 途径之间存在新的串扰,并与许多神经退行性疾病有关。Notch1-Nrf2 轴可能作用于神经系统发育,其分子机制最近也有报道。在这篇综述中,我们总结了 CNS 的基本结构和功能。还介绍了信号通路之间以及增殖、凋亡和迁移等发育过程之间相互作用的重要性,以确保 CNS 的正确发育。我们主要关注 Notch1 和 Nrf2 之间相互作用的可能机制以及 Notch1-Nrf2 在神经元中的功能的研究。Notch1 和 NRF2 之间可能存在直接相互作用,这与它们之间发生的串扰密切相关。强调了 Notch1-Nrf2 轴在神经系统异常发育中的意义和潜在应用。我们还讨论了 Notch1-Nrf2 轴通过调控神经元的凋亡、抗氧化途径和分化来控制神经系统发育的分子机制。这些信息将有助于更好地理解 Notch1-Nrf2 轴在神经系统中的信号通路,并可能促进新的治疗策略的发展。