Post Yorick, Lu Chenggang, Fletcher Russell B, Yeh Wen-Chen, Nguyen Huy, Lee Sung-Jin, Li Yang
Surrozen, Inc., 171 Oyster Point Blvd, Suite 400, South San Francisco, CA 94080, USA.
iScience. 2024 May 8;27(6):109938. doi: 10.1016/j.isci.2024.109938. eCollection 2024 Jun 21.
Wingless-related integration site or Wingless and Int-1 or Wingless-Int (WNT) signaling is crucial for embryonic development, and adult tissue homeostasis and regeneration, through its essential roles in cell fate, patterning, and stem cell regulation. The biophysical characteristics of WNT ligands have hindered efforts to interrogate ligand activity and prevented their development as therapeutics. Recent breakthroughs have enabled the generation of synthetic WNT signaling molecules that possess characteristics of natural ligands and potently activate the pathway, while also providing distinct advantages for therapeutic development and manufacturing. This review provides a detailed discussion of the protein engineering of these molecular platforms for WNT signaling agonism. We discuss the importance of WNT signaling in several organs and share insights from the initial application of these new classes of molecules and . These molecules offer a unique opportunity to enhance our understanding of how WNT signaling agonism promotes tissue repair, enabling targeted development of tailored therapeutics.
无翅相关整合位点(Wingless-related integration site)或无翅与Int-1(Wingless and Int-1)或无翅-Int(Wingless-Int,WNT)信号通路在胚胎发育以及成体组织稳态与再生过程中至关重要,因为它在细胞命运、模式形成以及干细胞调控方面发挥着关键作用。WNT配体的生物物理特性阻碍了对配体活性的研究,并使其无法作为治疗药物进行开发。最近的突破使得能够生成具有天然配体特性且能有效激活该信号通路的合成WNT信号分子,同时也为治疗药物的开发和生产提供了独特优势。本综述详细讨论了这些用于WNT信号激动作用的分子平台的蛋白质工程。我们讨论了WNT信号通路在多个器官中的重要性,并分享了这些新型分子初步应用的见解。这些分子为增进我们对WNT信号激动作用如何促进组织修复的理解提供了独特机会,从而推动定制治疗药物的靶向开发。