Bu Qixin, Li Zhiqiang, Zhang Junying, Xu Fei, Liu Jianmei, Liu Heli
From the State Key Laboratory of Natural and Biomimetic Drugs and.
Department of Molecular and Cellular Pharmacology, School of Pharmaceutical Sciences, Peking University Health Science Center, 38 Xueyuan Road, Haidian District, Beijing 100191, China.
J Biol Chem. 2017 Sep 29;292(39):16055-16069. doi: 10.1074/jbc.M117.791756. Epub 2017 Aug 14.
The Wnt-signaling pathway is crucial to cell proliferation, differentiation, and migration. The secreted Frizzled-related proteins (sFRPs) represent the largest family of secreted Wnt inhibitors. However, their function in antagonizing Wnt signaling has remained somewhat controversial. Here, we report the crystal structure of Sizzled from , the first full-length structure of an sFRP. Tethered by an inter-domain disulfide bond and a linker, the N-terminal cysteine-rich domain (CRD) and the C-terminal netrin-like domain (NTR) of Sizzled are arranged in a tandem fashion, with the NTR domain occluding the groove of CRD for Wnt accessibility. A Dual-Luciferase assay demonstrated that removing the NTR domain and replacing the CRD groove residues His-116 and His-118 with aromatic residues may significantly enhance antagonistic function of Sizzled in inhibiting Wnt3A signaling. Sizzled is a monomer in solution, and Sizzled CRD exhibited different packing in the crystal, suggesting that sFRPs do not have a conserved CRD dimerization mode. Distinct from the canonical NTR domain, the Sizzled NTR adopts a novel α/β folding with two perpendicular helices facing the central mixed β-sheet. The subgroup of human sFRP1/2/5 and Sizzled should have a similar NTR domain that features a highly positively charged region, opposite the NTR-CRD interface, suggesting that the NTR domain in human sFRPs, at least sFRP1/2/5, is unlikely to bind to Wnt but is likely involved in biphasic Wnt signaling modulation. In summary, the Sizzled structure provides the first insights into how the CRD and the NTR domains relate to each other for modulating Wnt-antagonistic function of sFRPs.
Wnt信号通路对细胞增殖、分化和迁移至关重要。分泌型卷曲相关蛋白(sFRPs)是分泌型Wnt抑制剂中最大的家族。然而,它们在拮抗Wnt信号方面的功能仍存在一定争议。在此,我们报道了来自[具体物种]的Sizzled的晶体结构,这是sFRP的首个全长结构。通过一个结构域间二硫键和一个连接子相连,Sizzled的N端富含半胱氨酸结构域(CRD)和C端类netrin结构域(NTR)以串联方式排列,其中NTR结构域封闭了CRD的凹槽以阻止Wnt进入。双荧光素酶检测表明,去除NTR结构域并用芳香族残基取代CRD凹槽中的组氨酸残基His-116和His-118,可能会显著增强Sizzled抑制Wnt3A信号的拮抗功能。Sizzled在溶液中是单体,且Sizzled的CRD在晶体中呈现出不同的堆积方式,这表明sFRPs没有保守的CRD二聚化模式。与典型的NTR结构域不同,Sizzled的NTR采用了一种新颖的α/β折叠,有两个垂直的螺旋面向中央的混合β折叠片层。人类sFRP1/2/5和Sizzled亚组应该有一个类似的NTR结构域,其特征是在与NTR-CRD界面相对的位置有一个高度带正电的区域,这表明人类sFRPs中的NTR结构域,至少是sFRP1/2/5,不太可能与Wnt结合,但可能参与双相Wnt信号调节。总之,Sizzled的结构首次揭示了CRD和NTR结构域如何相互关联以调节sFRPs的Wnt拮抗功能。