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Ligand-Occupied Integrin Internalization Links Nutrient Signaling to Invasive Migration.

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posted on 2015-12-08, 15:47 authored by E. Rainero, J. D. Howe, P. T. Caswell, N. B. Jamieson, K. Anderson, David R. Critchley, L. Machesky, J. C. Norman
Integrin trafficking is key to cell migration, but little is known about the spatiotemporal organization of integrin endocytosis. Here, we show that α5β1 integrin undergoes tensin-dependent centripetal movement from the cell periphery to populate adhesions located under the nucleus. From here, ligand-engaged α5β1 integrins are internalized under control of the Arf subfamily GTPase, Arf4, and are trafficked to nearby late endosomes/lysosomes. Suppression of centripetal movement or Arf4-dependent endocytosis disrupts flow of ligand-bound integrins to late endosomes/lysosomes and their degradation within this compartment. Arf4-dependent integrin internalization is required for proper lysosome positioning and for recruitment and activation of mTOR at this cellular subcompartment. Furthermore, nutrient depletion promotes subnuclear accumulation and endocytosis of ligand-engaged α5β1 integrins via inhibition of mTORC1. This two-way regulatory interaction between mTORC1 and integrin trafficking in combination with data describing a role for tensin in invasive cell migration indicate interesting links between nutrient signaling and metastasis.

History

Citation

Cell Reports, 2015 10, 398–413

Author affiliation

/Organisation/COLLEGE OF MEDICINE, BIOLOGICAL SCIENCES AND PSYCHOLOGY/MBSP Non-Medical Departments/Molecular & Cell Biology

Version

  • VoR (Version of Record)

Published in

Cell Reports

Publisher

Elsevier (Cell Press)

issn

2211-1247

eissn

2211-1247

Acceptance date

2014-12-16

Available date

2015-12-08

Publisher version

http://www.sciencedirect.com/science/article/pii/S2211124714010663

Language

en

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