Author
Listed:
- Hussein Al-Akhrass
(Université de Limoges, Faculté de Médecine)
- Thomas Naves
(Université de Limoges, Faculté de Médecine)
- François Vincent
(Université de Limoges, Faculté de Médecine
Centre Hospitalier et Universitaire de Limoges)
- Amandine Magnaudeix
(Université de Limoges, Faculté de Médecine)
- Karine Durand
(Université de Limoges, Faculté de Médecine
Centre Hospitalier et Universitaire de Limoges)
- François Bertin
(Centre Hospitalier et Universitaire de Limoges)
- Boris Melloni
(Centre Hospitalier et Universitaire de Limoges)
- Marie-Odile Jauberteau
(Université de Limoges, Faculté de Médecine
Centre Hospitalier et Universitaire de Limoges)
- Fabrice Lalloué
(Université de Limoges, Faculté de Médecine)
Abstract
Tyrosine kinase receptors such as the epidermal growth factor receptor (EGFR) transduce information from the microenvironment into the cell and activate homeostatic signaling pathways. Internalization and degradation of EGFR after ligand binding limits the intensity of proliferative signaling, thereby helping to maintain cell integrity. In cancer cells, deregulation of EGFR trafficking has a variety of effects on tumor progression. Here we report that sortilin is a key regulator of EGFR internalization. Loss of sortilin in tumor cells promoted cell proliferation by sustaining EGFR signaling at the cell surface, ultimately accelerating tumor growth. In lung cancer patients, sortilin expression decreased with increased pathologic grade, and expression of sortilin was strongly correlated with survival, especially in patients with high EGFR expression. Sortilin is therefore a regulator of EGFR intracellular trafficking that promotes receptor internalization and limits signaling, which in turn impacts tumor growth.
Suggested Citation
Hussein Al-Akhrass & Thomas Naves & François Vincent & Amandine Magnaudeix & Karine Durand & François Bertin & Boris Melloni & Marie-Odile Jauberteau & Fabrice Lalloué, 2017.
"Sortilin limits EGFR signaling by promoting its internalization in lung cancer,"
Nature Communications, Nature, vol. 8(1), pages 1-15, December.
Handle:
RePEc:nat:natcom:v:8:y:2017:i:1:d:10.1038_s41467-017-01172-5
DOI: 10.1038/s41467-017-01172-5
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