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合成多价二硫键约束肽激动剂通过 LRP6 核心受体聚类增强 Wnt1/β-连环蛋白信号通路。

Synthetic Multivalent Disulfide-Constrained Peptide Agonists Potentiate Wnt1/β-Catenin Signaling via LRP6 Coreceptor Clustering.

机构信息

Department of Early Discovery Biochemistry, Genentech, South San Francisco, California 94080, United States.

Department of Structural Biology, Genentech, South San Francisco, California 94080, United States.

出版信息

ACS Chem Biol. 2023 Apr 21;18(4):772-784. doi: 10.1021/acschembio.2c00753. Epub 2023 Mar 9.

Abstract

Wnt ligands are critical for tissue homeostasis and form a complex with LRP6 and frizzled coreceptors to initiate Wnt/β-catenin signaling. Yet, how different Wnts achieve various levels of signaling activation through distinct domains on LRP6 remains elusive. Developing tool ligands that target individual LRP6 domains could help elucidate the mechanism of Wnt signaling regulation and uncover pharmacological approaches for pathway modulation. We employed directed evolution of a disulfide constrained peptide (DCP) to identify molecules that bind to the third β-propeller domain of LRP6. The DCPs antagonize Wnt3a while sparing Wnt1 signaling. Using PEG linkers with different geometries, we converted the Wnt3a antagonist DCPs to multivalent molecules that potentiated Wnt1 signaling by clustering the LRP6 coreceptor. The mechanism of potentiation is unique as it occurred only in the presence of extracellular secreted Wnt1 ligand. While all DCPs recognized a similar binding interface on LRP6, they displayed different spatial orientations that influenced their cellular activities. Moreover, structural analyses revealed that the DCPs exhibited new folds that were distinct from the parent DCP framework they were evolved from. The multivalent ligand design principles highlighted in this study provide a path for developing peptide agonists that modulate different branches of cellular Wnt signaling.

摘要

Wnt 配体对于组织内稳态至关重要,它们与 LRP6 和卷曲核心受体形成复合物,从而启动 Wnt/β-连环蛋白信号通路。然而,不同的 Wnt 如何通过 LRP6 上不同的结构域实现不同水平的信号激活仍然难以捉摸。开发针对特定 LRP6 结构域的工具配体可以帮助阐明 Wnt 信号调控的机制,并揭示用于通路调节的药理学方法。我们采用定向进化技术对二硫键约束肽(DCP)进行了改造,以鉴定与 LRP6 第三β-发夹结构域结合的分子。这些 DCP 拮抗 Wnt3a,同时不影响 Wnt1 信号通路。我们使用不同几何形状的 PEG 接头将 Wnt3a 拮抗剂 DCP 转化为多价分子,通过聚集 LRP6 核心受体来增强 Wnt1 信号通路。这种增强作用的机制是独特的,因为它仅在存在细胞外分泌的 Wnt1 配体的情况下才会发生。虽然所有的 DCP 都识别 LRP6 上相似的结合界面,但它们表现出不同的空间取向,从而影响它们的细胞活性。此外,结构分析表明,DCP 表现出与它们所源自的原始 DCP 框架不同的新折叠。本研究中提出的多价配体设计原则为开发调节细胞 Wnt 信号不同分支的肽类激动剂提供了一条途径。

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