Caveolin1, the main component of caveolae, plays a major role in regulating cell motility, gene expression, and cytoskeleton remodeling downstream of many membrane receptors. Here, we summarize different techniques set up to study changes in cell morphology and cell motility regulated by ERK/caveolin1 interactions during induction of epithelial mesenchymal transition (EMT) in mesothelial cells (MCs).

Cell-based assays to study ERK pathway/caveolin1 interactions / Strippoli, Raffaele; Echarri, Asier; del Pozo, Miguel Angel. - ELETTRONICO. - 1487(2017), pp. 163-174. [10.1007/978-1-4939-6424-6_12].

Cell-based assays to study ERK pathway/caveolin1 interactions

STRIPPOLI, RAFFAELE;
2017

Abstract

Caveolin1, the main component of caveolae, plays a major role in regulating cell motility, gene expression, and cytoskeleton remodeling downstream of many membrane receptors. Here, we summarize different techniques set up to study changes in cell morphology and cell motility regulated by ERK/caveolin1 interactions during induction of epithelial mesenchymal transition (EMT) in mesothelial cells (MCs).
2017
Methods in Molecular Biology
978-1-4939-6422-2
978-1-4939-6424-6
caveolin; cell height; cell morphology; cell motility; ERK; mesothelial cells; molecular biology; genetics
02 Pubblicazione su volume::02a Capitolo o Articolo
Cell-based assays to study ERK pathway/caveolin1 interactions / Strippoli, Raffaele; Echarri, Asier; del Pozo, Miguel Angel. - ELETTRONICO. - 1487(2017), pp. 163-174. [10.1007/978-1-4939-6424-6_12].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/924174
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