Maurice Madelon M, Angers Stephane
Center for Molecular Medicine, University Medical Center, Utrecht, Netherlands.
Oncode Institute, Utrecht, Netherlands.
Nat Rev Mol Cell Biol. 2025 May;26(5):371-388. doi: 10.1038/s41580-024-00823-y. Epub 2025 Jan 24.
In multicellular organisms, Wnt proteins govern stem and progenitor cell renewal and differentiation to regulate embryonic development, adult tissue homeostasis and tissue regeneration. Defects in canonical Wnt signalling, which is transduced intracellularly by β-catenin, have been associated with developmental disorders, degenerative diseases and cancers. Although a simple model describing Wnt-β-catenin signalling is widely used to introduce this pathway and has largely remained unchanged over the past 30 years, in this Review we discuss recent studies that have provided important new insights into the mechanisms of Wnt production, receptor activation and intracellular signalling that advance our understanding of the molecular mechanisms that underlie this important cell-cell communication system. In addition, we review the recent development of molecules capable of activating the Wnt-β-catenin pathway with selectivity in vitro and in vivo that is enabling new lines of study to pave the way for the development of Wnt therapies for the treatment of human diseases.
在多细胞生物中,Wnt蛋白调控干细胞和祖细胞的更新与分化,以调节胚胎发育、成体组织稳态和组织再生。由β-连环蛋白在细胞内转导的经典Wnt信号传导缺陷,与发育障碍、退行性疾病和癌症相关。尽管一个描述Wnt-β-连环蛋白信号传导的简单模型被广泛用于介绍该途径,并且在过去30年中基本保持不变,但在本综述中,我们讨论了最近的研究,这些研究为Wnt产生、受体激活和细胞内信号传导机制提供了重要的新见解,推进了我们对这一重要细胞间通讯系统潜在分子机制的理解。此外,我们回顾了能够在体外和体内选择性激活Wnt-β-连环蛋白途径的分子的最新进展,这使得新的研究方向能够为开发用于治疗人类疾病的Wnt疗法铺平道路。