iHuman Institute, ShanghaiTech University, Shanghai, China.
Center for Cancer and Cell Biology, Innovation and Integration Program, Van Andel Research Institute, Grand Rapids, MI, USA.
Nature. 2018 Aug;560(7720):666-670. doi: 10.1038/s41586-018-0447-x. Epub 2018 Aug 22.
Frizzled receptors (FZDs) are class-F G-protein-coupled receptors (GPCRs) that function in Wnt signalling and are essential for developing and adult organisms. As central mediators in this complex signalling pathway, FZDs serve as gatekeeping proteins both for drug intervention and for the development of probes in basic and in therapeutic research. Here we present an atomic-resolution structure of the human Frizzled 4 receptor (FZD4) transmembrane domain in the absence of a bound ligand. The structure reveals an unusual transmembrane architecture in which helix VI is short and tightly packed, and is distinct from all other GPCR structures reported so far. Within this unique transmembrane fold is an extremely narrow and highly hydrophilic pocket that is not amenable to the binding of traditional GPCR ligands. We show that such a pocket is conserved across all FZDs, which may explain the long-standing difficulties in the development of ligands for these receptors. Molecular dynamics simulations on the microsecond timescale and mutational analysis uncovered two coupled, dynamic kinks located at helix VII that are involved in FZD4 activation. The stability of the structure in its ligand-free form, an unfavourable pocket for ligand binding and the two unusual kinks on helix VII suggest that FZDs may have evolved a novel ligand-recognition and activation mechanism that is distinct from that of other GPCRs.
卷曲受体(FZDs)是一类 F 型 G 蛋白偶联受体(GPCRs),在 Wnt 信号转导中发挥作用,是发育和成年生物体所必需的。作为这个复杂信号通路的核心介质,FZDs 作为药物干预和基础研究中探针开发的守门蛋白,发挥着双重作用。在这里,我们呈现了一个没有结合配体的人卷曲受体 4(FZD4)跨膜域的原子分辨率结构。该结构揭示了一种不寻常的跨膜结构,其中第六螺旋短而紧密堆积,与迄今为止报道的所有其他 GPCR 结构都不同。在这个独特的跨膜折叠中,有一个非常狭窄和高度亲水的口袋,不适合结合传统的 GPCR 配体。我们表明,这样的口袋在所有 FZDs 中都是保守的,这可能解释了这些受体配体开发长期存在的困难。在微秒时间尺度上的分子动力学模拟和突变分析揭示了位于第七螺旋上的两个偶联的动态扭曲,它们参与了 FZD4 的激活。配体结合的不利口袋和第七螺旋上的两个不寻常的扭曲表明,FZDs 可能已经进化出一种与其他 GPCR 不同的新型配体识别和激活机制。