EGFR-dependent endocytosis of Wnt9a and Fzd9b promotes β-catenin signaling during hematopoietic stem cell development in zebrafish

Author:

Nguyen Nicole1ORCID,Carpenter Kelsey A.1ORCID,Ensing Jessica1,Gilliland Carla1,Rudisel Emma J.1ORCID,Mu Emily M.1ORCID,Thurlow Kate E.12ORCID,Triche Timothy J.3,Grainger Stephanie1ORCID

Affiliation:

1. Department of Cell Biology, Van Andel Institute, Grand Rapids, MI 49503, USA.

2. Van Andel Institute Graduate School, Grand Rapids, MI 49503, USA.

3. Department of Epigenetics, Van Andel Institute, Grand Rapids, MI 49503, USA.

Abstract

Cell-to-cell communication through secreted Wnt ligands that bind to members of the Frizzled (Fzd) family of transmembrane receptors is critical for development and homeostasis. Wnt9a signals through Fzd9b, the co-receptor LRP5 or LRP6 (LRP5/6), and the epidermal growth factor receptor (EGFR) to promote early proliferation of zebrafish and human hematopoietic stem cells during development. Here, we developed fluorescently labeled, biologically active Wnt9a and Fzd9b fusion proteins to demonstrate that EGFR-dependent endocytosis of the ligand-receptor complex was required for signaling. In human cells, the Wnt9a-Fzd9b complex was rapidly endocytosed and trafficked through early and late endosomes, lysosomes, and the endoplasmic reticulum. Using small-molecule inhibitors and genetic and knockdown approaches, we found that Wnt9a-Fzd9b endocytosis required EGFR-mediated phosphorylation of the Fzd9b tail, caveolin, and the scaffolding protein EGFR protein substrate 15 (EPS15). LRP5/6 and the downstream signaling component AXIN were required for Wnt9a-Fzd9b signaling but not for endocytosis. Knockdown or loss of EPS15 impaired hematopoietic stem cell development in zebrafish. Other Wnt ligands do not require endocytosis for signaling activity, implying that specific modes of endocytosis and trafficking may represent a method by which Wnt-Fzd specificity is established.

Publisher

American Association for the Advancement of Science (AAAS)

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