| Literature DB >> 26641717 |
Massiullah Shafaq-Zadah1,2,3, Carina S Gomes-Santos4,5, Sabine Bardin4,5, Paolo Maiuri6, Mathieu Maurin7,8, Julian Iranzo9, Alexis Gautreau10, Christophe Lamaze2,3,11, Patrick Caswell12, Bruno Goud4,5, Ludger Johannes1,2,3.
Abstract
Integrins have key functions in cell adhesion and migration. How integrins are dynamically relocalized to the leading edge in highly polarized migratory cells has remained unexplored. Here, we demonstrate that β1 integrin (known as PAT-3 in Caenorhabditis elegans), but not β3, is transported from the plasma membrane to the trans-Golgi network, to be resecreted in a polarized manner. This retrograde trafficking is restricted to the non-ligand-bound conformation of β1 integrin. Retrograde trafficking inhibition abrogates several β1-integrin-specific functions such as cell adhesion in early embryonic development of mice, and persistent cell migration in the developing posterior gonad arm of C. elegans. Our results establish a paradigm according to which retrograde trafficking, and not endosomal recycling, is the key driver for β1 integrin function in highly polarized cells. These data more generally suggest that the retrograde route is used to relocalize plasma membrane machinery from previous sites of function to the leading edge of migratory cells.Entities:
Mesh:
Substances:
Year: 2015 PMID: 26641717 DOI: 10.1038/ncb3287
Source DB: PubMed Journal: Nat Cell Biol ISSN: 1465-7392 Impact factor: 28.824