首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The crystal structure of full-length Sizzled from Xenopus laevis yields insights into Wnt-antagonistic function of secreted Frizzled-related proteins
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The crystal structure of full-length Sizzled from Xenopus laevis yields insights into Wnt-antagonistic function of secreted Frizzled-related proteins

机译:Xenopus laevis全长Sizzled的晶体结构产生了对分泌的Frizzled相关蛋白的Wnt拮抗作用的见解

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摘要

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 Xenopus laevis, 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.
机译:Wnt信号通路对于细胞增殖,分化和迁移至关重要。分泌的卷曲蛋白相关蛋白(sFRPs)代表了分泌型Wnt抑制剂的最大家族。然而,它们在拮抗Wnt信号传导中的功能仍存在争议。在这里,我们报道非洲爪蟾(Xenopus laevis)Sizzled的晶体结构,这是sFRP的第一个全长结构。 Sizzled的N末端富含半胱氨酸的结构域(CRD)和C末端的netrin样结构域(NTR)通过域间二硫键和一个接头进行束缚,而NTR结构域遮盖了Wnt可访问性的CRD凹槽。双重荧光素酶测定法表明,去除NTR结构域并用芳香族残基取代CRD凹槽残基His-116和His-118可以显着增强Sizzled在抑制Wnt3A信号传导中的拮抗作用。 Sizzled是溶液中的单体,并且Sizzled CRD在晶体中表现出不同的堆积,这表明sFRP不具有保守的CRD二聚化模式。与规范的NTR域不同,Sizzled NTR采用新颖的α/β折叠,其中两个垂直螺旋面对中央混合β-折叠。人类sFRP1 / 2/5和Sizzled的亚组应具有相似的NTR结构域,其特征是带有一个高度带正电的区域,与NTR-CRD界面相对,这表明人类sFRP中的NTR结构域(至少为sFRP1 / 2/5)为不太可能与Wnt结合,但可能参与了双相Wnt信号调制。总之,Sizzled结构为CRD和NTR域如何相互关联以调节sFRP的Wnt拮抗功能提供了第一见解。

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