Conformational cycling of the Wntless transporter drives trafficking and secretion of Wnt morphogens
Abstract
Abstract Wnt proteins are lipid-modified morphogens fundamental in development and disease. During Wnt biogenesis, the G-protein-coupled receptor (GPCR)-like transporter Wntless (WLS) escorts lipidated Wnts from the endoplasmic reticulum to the plasma membrane, then transfers them to extracellular carriers, forming active and soluble morphogen-carrier complexes. To dissect the mechanisms involved, we solve cryo-EM structures of Wnt-bound WLS and unliganded WLS, and perform structure-guided functional experiments. Wnts engage WLS via three conserved hairpins, which are all required for Wnt trafficking to the cell surface and carrier-mediated secretion. Wnt release from cells is driven by dramatic conformational changes in the WLS transmembrane domain, reminiscent of GPCR activation, together with WLS extracellular rearrangements. Unexpectedly, we find that Wnt5a bound to WLS forms dimers, with implications for Wnt signaling. These findings define the mechanism of WLS conformational cycling that governs the intracellular transport and extracellular release of Wnt morphogens, essential steps in the Wnt pathway.
Article Details
Authors (18)
Yunhui Ge
Taciani de Almeida Magalhaes
Hongjiang Wu
Dick J. H. van den Boomen
Thu Uyen Nguyen
Tongyi Dou
Gaya P. Yadav
Laboratory for Biomolecular Structure and Dynamics (LBSD), Department of Biochemistry and Biophysics
Sukyeong Lee
Zhao Wang
State Key Laboratory of Bioinspired Interfacial Materials Science, State and Local Joint Engineering Laboratory for Novel Functional Polymeric Materials, Jiangsu Key Laboratory of Advanced Functional Polymer Materials, Suzhou Key Laboratory of Macromolecular Design and Precision Synthesis, College of Chemistry, Chemical Engineering and Materials Science
Andrew Lemoff
Xuemei Luo
Sumitha S. Menon
Min Zhang
Jin Wang
Zhicheng Jin
Aiiso Yufeng Li Family Department of Chemical and Nano Engineering
Jiansen Jiang
Adrian Salic
Pengxiang Huang