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WIP and WICH/WIRE co-ordinately control invadopodium formation and maturation in human breast cancer cell invasion.

Scientific reports (2016-03-25)
Esther García, Chiara Ragazzini, Xinzi Yu, Elena Cuesta-García, Jorge Bernardino de la Serna, Tobias Zech, David Sarrió, Laura M Machesky, Inés M Antón
RÉSUMÉ

Cancer cells form actin-rich degradative protrusions (invasive pseudopods and invadopodia), which allows their efficient dispersal during metastasis. Using biochemical and advanced imaging approaches, we demonstrate that the N-WASP-interactors WIP and WICH/WIRE play non-redundant roles in cancer cell invasion. WIP interacts with N-WASP and cortactin and is essential for invadopodium assembly, whereas WICH/WIRE regulates N-WASP activation to control invadopodium maturation and degradative activity. Our data also show that Nck interaction with WIP and WICH/WIRE modulates invadopodium maturation; changes in WIP and WICH/WIRE levels induce differential distribution of Nck. We show that WIP can replace WICH/WIRE functions and that elevated WIP levels correlate with high invasiveness. These findings identify a role for WICH/WIRE in invasiveness and highlight WIP as a hub for signaling molecule recruitment during invadopodium generation and cancer progression, as well as a potential diagnostic biomarker and an optimal target for therapeutic approaches.

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Supelco
17α-Hydroxyprogesterone-2,3,4-13C3 solution, 100 μg/mL in methanol, ampule of 1 mL, certified reference material, Cerilliant®
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Anti-WIPF2 antibody produced in rabbit, Prestige Antibodies® Powered by Atlas Antibodies, affinity isolated antibody, buffered aqueous glycerol solution, Ab3