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ß1 Integrin Binding Phosphorylates Ezrin at T567 to Activate a Lipid Raft Signalsome Driving Invadopodia Activity and Invasion

Overview of attention for article published in PLOS ONE, September 2013
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Title
ß1 Integrin Binding Phosphorylates Ezrin at T567 to Activate a Lipid Raft Signalsome Driving Invadopodia Activity and Invasion
Published in
PLOS ONE, September 2013
DOI 10.1371/journal.pone.0075113
Pubmed ID
Authors

Ester Antelmi, Rosa A. Cardone, Maria R. Greco, Rosa Rubino, Francesca Di Sole, Nicola A. Martino, Valeria Casavola, MariaLuisa Carcangiu, Loredana Moro, Stephan J. Reshkin

Abstract

Extracellular matrix (ECM) degradation is a critical process in tumor cell invasion and requires matrix degrading protrusions called invadopodia. The Na(+)/H(+) exchanger (NHE1) has recently been shown to be fundamental in the regulation of invadopodia actin cytoskeleton dynamics and activity. However, the structural link between the invadopodia cytoskeleton and NHE1 is still unknown. A candidate could be ezrin, a linker between the NHE1 and the actin cytoskeleton known to play a pivotal role in invasion and metastasis. However, the mechanistic basis for its role remains unknown. Here, we demonstrate that ezrin phosphorylated at T567 is highly overexpressed in the membrane of human breast tumors and positively associated with invasive growth and HER2 overexpression. Further, in the metastatic cell line, MDA-MB-231, p-ezrin was almost exclusively expressed in invadopodia lipid rafts where it co-localized in a functional complex with NHE1, EGFR, ß1-integrin and phosphorylated-NHERF1. Manipulation by mutation of ezrins T567 phosphorylation state and/or PIP2 binding capacity or of NHE1s binding to ezrin or PIP2 demonstrated that p-ezrin expression and binding to PIP2 are required for invadopodia-mediated ECM degradation and invasion and identified NHE1 as the membrane protein that p-ezrin regulates to induce invadopodia formation and activity.

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Geographical breakdown

Country Count As %
United Kingdom 2 3%
India 1 1%
Italy 1 1%
Unknown 63 94%

Demographic breakdown

Readers by professional status Count As %
Researcher 19 28%
Student > Ph. D. Student 18 27%
Student > Master 8 12%
Student > Bachelor 3 4%
Professor > Associate Professor 3 4%
Other 7 10%
Unknown 9 13%
Readers by discipline Count As %
Agricultural and Biological Sciences 22 33%
Biochemistry, Genetics and Molecular Biology 14 21%
Medicine and Dentistry 10 15%
Neuroscience 2 3%
Nursing and Health Professions 1 1%
Other 5 7%
Unknown 13 19%