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Selected Works

2010

Cell and Developmental Biology

Pseudopodia

Articles 1 - 3 of 3

Full-Text Articles in Life Sciences

The Integrin Alpha6beta4 Functions In Carcinoma Cell Migration On Laminin-1 By Mediating The Formation And Stabilization Of Actin-Containing Motility Structures, Isaac Rabinovitz, Arthur M. Mercurio Nov 2010

The Integrin Alpha6beta4 Functions In Carcinoma Cell Migration On Laminin-1 By Mediating The Formation And Stabilization Of Actin-Containing Motility Structures, Isaac Rabinovitz, Arthur M. Mercurio

Arthur M. Mercurio

Functional studies on the alpha6beta4 integrin have focused primarily on its role in the organization of hemidesmosomes, stable adhesive structures that associate with the intermediate filament cytoskeleton. In this study, we examined the function of the alpha6beta4 integrin in clone A cells, a colon carcinoma cell line that expresses alpha6beta4 but no alpha6beta1 integrin and exhibits dynamic adhesion and motility on laminin-1. Time-lapse videomicroscopy of clone A cells on laminin-1 revealed that their migration is characterized by filopodial extension and stabilization followed by lamellae that extend in the direction of stabilized filopodia. A function-blocking mAb specific for the alpha6beta4 integrin …


Protein Kinase C-Dependent Mobilization Of The Alpha6beta4 Integrin From Hemidesmosomes And Its Association With Actin-Rich Cell Protrusions Drive The Chemotactic Migration Of Carcinoma Cells, Isaac Rabinovitz, Alex Toker, Arthur M. Mercurio Nov 2010

Protein Kinase C-Dependent Mobilization Of The Alpha6beta4 Integrin From Hemidesmosomes And Its Association With Actin-Rich Cell Protrusions Drive The Chemotactic Migration Of Carcinoma Cells, Isaac Rabinovitz, Alex Toker, Arthur M. Mercurio

Arthur M. Mercurio

We explored the hypothesis that the chemotactic migration of carcinoma cells that assemble hemidesmosomes involves the activation of a signaling pathway that releases the alpha6beta4 integrin from these stable adhesion complexes and promotes its association with F-actin in cell protrusions enabling it to function in migration. Squamous carcinoma-derived A431 cells were used because they express alpha6beta4 and migrate in response to EGF stimulation. Using function-blocking antibodies, we show that the alpha6beta4 integrin participates in EGF-stimulated chemotaxis and is required for lamellae formation on laminin-1. At concentrations of EGF that stimulate A431 chemotaxis ( approximately 1 ng/ml), the alpha6beta4 integrin is …


Supervillin Reorganizes The Actin Cytoskeleton And Increases Invadopodial Efficiency, Jessica Lynn Crowley, Tara C. Smith, Zhiyou Fang, Norio Takizawa, Elizabeth J. Luna Jan 2010

Supervillin Reorganizes The Actin Cytoskeleton And Increases Invadopodial Efficiency, Jessica Lynn Crowley, Tara C. Smith, Zhiyou Fang, Norio Takizawa, Elizabeth J. Luna

Elizabeth J. Luna

Tumor cells use actin-rich protrusions called invadopodia to degrade extracellular matrix (ECM) and invade tissues; related structures, termed podosomes, are sites of dynamic ECM interaction. We show here that supervillin (SV), a peripheral membrane protein that binds F-actin and myosin II, reorganizes the actin cytoskeleton and potentiates invadopodial function. Overexpressed SV induces redistribution of lamellipodial cortactin and lamellipodin/RAPH1/PREL1 away from the cell periphery to internal sites and concomitantly increases the numbers of F-actin punctae. Most punctae are highly dynamic and colocalize with the podosome/invadopodial proteins, cortactin, Tks5, and cdc42. Cortactin binds SV sequences in vitro and contributes to the formation …