4.8 Article

A SNX3-dependent retromer pathway mediates retrograde transport of the Wnt sorting receptor Wntless and is required for Wnt secretion

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NATURE CELL BIOLOGY
卷 13, 期 8, 页码 914-U358

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NATURE RESEARCH
DOI: 10.1038/ncb2281

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资金

  1. Dutch Cancer Society [HUBR 2008-4114]
  2. EU
  3. NWO [016.076.317]
  4. Boehringer Ingelheim Foundation
  5. Swiss National Science Foundation
  6. Forschungskredit of the University of Zurich
  7. Wellcome Trust [089928/Z/09/Z, 085743, 086777/Z/08/Z]
  8. Wellcome Trust [089928/Z/09/Z, 086777/Z/08/Z] Funding Source: Wellcome Trust

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Wnt proteins are lipid-modified glycoproteins that play a central role in development, adult tissue homeostasis and disease. Secretion of Wnt proteins is mediated by the Wnt-binding protein Wntless (Wls), which transports Wnt from the Golgi network to the cell surface for release. It has recently been shown that recycling of Wls through a retromer-dependent endosome-to-Golgi trafficking pathway is required for efficient Wnt secretion, but the mechanism of this retrograde transport pathway is poorly understood. Here, we report that Wls recycling is mediated through a retromer pathway that is independent of the retromer sorting nexins SNX1-SNX2 and SNX5-SNX6. We have found that the unrelated sorting nexin, SNX3, has an evolutionarily conserved function in Wls recycling and Wnt secretion and show that SNX3 interacts directly with the cargo-selective subcomplex of the retromer to sort Wls into a morphologically distinct retrieval pathway. These results demonstrate that SNX3 is part of an alternative retromer pathway that functionally separates the retrograde transport of Wls from other retromer cargo.

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