KISS1R signaling promotes invadopodia formation in human breast cancer cell via β-arrestin2/ERK

Kisspeptins (KPs), peptide products of the KISS1 gene are endogenous ligands for the kisspeptin receptor (KISS1R), a G protein-coupled receptor. In numerous cancers, KISS1R signaling plays anti-metastatic roles. However, we have previously shown that in breast cancer cells lacking the estrogen recep...

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Veröffentlicht in:Cellular signalling 2016-03, Vol.28 (3), p.165-176
Hauptverfasser: Goertzen, Cameron G., Dragan, Magdalena, Turley, Eva, Babwah, Andy V., Bhattacharya, Moshmi
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Sprache:eng
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Zusammenfassung:Kisspeptins (KPs), peptide products of the KISS1 gene are endogenous ligands for the kisspeptin receptor (KISS1R), a G protein-coupled receptor. In numerous cancers, KISS1R signaling plays anti-metastatic roles. However, we have previously shown that in breast cancer cells lacking the estrogen receptor (ERα), kisspeptin-10 stimulates cell migration and invasion by cross-talking with the epidermal growth factor receptor (EGFR), via a β-arrestin-2-dependent mechanism. To further define the mechanisms by which KISS1R stimulates invasion, we determined the effect of down-regulating KISS1R expression in triple negative breast cancer cells. We found that depletion of KISS1R reduced their mesenchymal phenotype and invasiveness. We show for the first time that KISS1R signaling induces invadopodia formation and activation of key invadopodia proteins, cortactin, cofilin and membrane type I matrix metalloproteases (MT1-MMP). Moreover, KISS1R stimulated invadopodia formation occurs via a new pathway involving a β-arrestin2 and ERK1/2-dependent mechanism, independent of Src. Taken together, our findings suggest that targeting the KISS1R signaling axis might be a promising strategy to inhibit invasiveness and metastasis. •The G protein coupled receptor, KISS1R stimulates invadopodia formation and is localized to invadopodia•KISS1R signaling stimulates MT1-MMP activation, that regulates ECM degradation at the leading edge of invasive cancer cells•KISS1R stimulates invadopodia formation via β-arrestin-2/ERK dependent mechanism, independent of Src.
ISSN:0898-6568
1873-3913
DOI:10.1016/j.cellsig.2015.12.010