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通过Frizzled4 对 Norrin 信号进行生物物理和功能表征。

Biophysical and functional characterization of Norrin signaling through Frizzled4.

机构信息

Department of Biological Sciences, Seoul National University, 08826 Seoul, Republic of Korea.

School of Pharmacy, Sungkyunkwan University, 16419 Suwon, Republic of Korea.

出版信息

Proc Natl Acad Sci U S A. 2018 Aug 28;115(35):8787-8792. doi: 10.1073/pnas.1805901115. Epub 2018 Aug 13.

Abstract

Wnt signaling is initiated by Wnt ligand binding to the extracellular ligand binding domain, called the cysteine-rich domain (CRD), of a Frizzled (Fzd) receptor. Norrin, an atypical Fzd ligand, specifically interacts with Fzd4 to activate β-catenin-dependent canonical Wnt signaling. Much of the molecular basis that confers Norrin selectivity in binding to Fzd4 was revealed through the structural study of the Fzd4-Norrin complex. However, how the ligand interaction, seemingly localized at the CRD, is transmitted across full-length Fzd4 to the cytoplasm remains largely unknown. Here, we show that a flexible linker domain, which connects the CRD to the transmembrane domain, plays an important role in Norrin signaling. The linker domain directly contributes to the high-affinity interaction between Fzd4 and Norrin as shown by ∼10-fold higher binding affinity of Fzd4 to Norrin in the presence of the linker. Swapping the Fzd4 linker with the Fzd5 linker resulted in the loss of Norrin signaling, suggesting the importance of the linker in ligand-specific cellular response. In addition, structural dynamics of Fzd4 associated with Norrin binding investigated by hydrogen/deuterium exchange MS revealed Norrin-induced conformational changes on the linker domain and the intracellular loop 3 (ICL3) region of Fzd4. Cell-based functional assays showed that linker deletion, L430A and L433A mutations at ICL3, and C-terminal tail truncation displayed reduced β-catenin-dependent signaling activity, indicating the functional significance of these sites. Together, our results provide functional and biochemical dissection of Fzd4 in Norrin signaling.

摘要

Wnt 信号是由 Wnt 配体与卷曲受体(Fzd)的细胞外配体结合域,即富含半胱氨酸结构域(CRD)结合而引发的。Norrin 是一种非典型的 Fzd 配体,它特异性地与 Fzd4 相互作用,激活β-连环蛋白依赖性经典 Wnt 信号通路。通过 Fzd4-Norrin 复合物的结构研究,揭示了赋予 Norrin 与 Fzd4 结合特异性的大部分分子基础。然而,配体相互作用似乎局限于 CRD,如何将其传递穿过全长 Fzd4 至细胞质,在很大程度上仍不清楚。在这里,我们表明连接 CRD 与跨膜结构域的柔性连接结构域在 Norrin 信号转导中起着重要作用。该连接结构域直接促进了 Fzd4 与 Norrin 之间的高亲和力相互作用,如在存在连接结构域的情况下,Fzd4 与 Norrin 的结合亲和力提高了约 10 倍。用 Fzd5 的连接结构域替换 Fzd4 的连接结构域导致 Norrin 信号的丧失,这表明该连接结构域在配体特异性细胞反应中的重要性。此外,通过氢/氘交换 MS 研究与 Norrin 结合相关的 Fzd4 结构动力学,揭示了 Norrin 诱导的 Fzd4 连接结构域和细胞内环 3(ICL3)区域的构象变化。基于细胞的功能测定表明,连接结构域缺失、ICL3 处的 L430A 和 L433A 突变以及 C 端尾部截断显示出降低的β-连环蛋白依赖性信号活性,表明这些位点具有功能意义。总之,我们的研究结果提供了 Fzd4 在 Norrin 信号转导中的功能和生化剖析。

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