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Lamellipodin promotes invasive 3D cancer cell migration via regulated interactions with Ena/VASP and SCAR/WAVE

Cancer invasion is a hallmark of metastasis. The mesenchymal mode of cancer cell invasion is mediated by elongated membrane protrusions driven by the assembly of branched F-actin networks. How deregulation of actin regulators promotes cancer cell invasion is still enigmatic. We report that increased...

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Autores principales: Carmona, G, Perera, U, Gillett, C, Naba, A, Law, A-L, Sharma, V P, Wang, J, Wyckoff, J, Balsamo, M, Mosis, F, De Piano, M, Monypenny, J, Woodman, N, McConnell, R E, Mouneimne, G, Van Hemelrijck, M, Cao, Y, Condeelis, J, Hynes, R O, Gertler, F B, Krause, M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5031503/
https://www.ncbi.nlm.nih.gov/pubmed/26996666
http://dx.doi.org/10.1038/onc.2016.47
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author Carmona, G
Perera, U
Gillett, C
Naba, A
Law, A-L
Sharma, V P
Wang, J
Wyckoff, J
Balsamo, M
Mosis, F
De Piano, M
Monypenny, J
Woodman, N
McConnell, R E
Mouneimne, G
Van Hemelrijck, M
Cao, Y
Condeelis, J
Hynes, R O
Gertler, F B
Krause, M
author_facet Carmona, G
Perera, U
Gillett, C
Naba, A
Law, A-L
Sharma, V P
Wang, J
Wyckoff, J
Balsamo, M
Mosis, F
De Piano, M
Monypenny, J
Woodman, N
McConnell, R E
Mouneimne, G
Van Hemelrijck, M
Cao, Y
Condeelis, J
Hynes, R O
Gertler, F B
Krause, M
author_sort Carmona, G
collection PubMed
description Cancer invasion is a hallmark of metastasis. The mesenchymal mode of cancer cell invasion is mediated by elongated membrane protrusions driven by the assembly of branched F-actin networks. How deregulation of actin regulators promotes cancer cell invasion is still enigmatic. We report that increased expression and membrane localization of the actin regulator Lamellipodin correlate with reduced metastasis-free survival and poor prognosis in breast cancer patients. In agreement, we find that Lamellipodin depletion reduced lung metastasis in an orthotopic mouse breast cancer model. Invasive 3D cancer cell migration as well as invadopodia formation and matrix degradation was impaired upon Lamellipodin depletion. Mechanistically, we show that Lamellipodin promotes invasive 3D cancer cell migration via both actin-elongating Ena/VASP proteins and the Scar/WAVE complex, which stimulates actin branching. In contrast, Lamellipodin interaction with Scar/WAVE but not with Ena/VASP is required for random 2D cell migration. We identified a phosphorylation-dependent mechanism that regulates selective recruitment of these effectors to Lamellipodin: Abl-mediated Lamellipodin phosphorylation promotes its association with both Scar/WAVE and Ena/VASP, whereas Src-dependent phosphorylation enhances binding to Scar/WAVE but not to Ena/VASP. Through these selective, regulated interactions Lamellipodin mediates directional sensing of epidermal growth factor (EGF) gradients and invasive 3D migration of breast cancer cells. Our findings imply that increased Lamellipodin levels enhance Ena/VASP and Scar/WAVE activities at the plasma membrane to promote 3D invasion and metastasis.
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spelling pubmed-50315032016-09-30 Lamellipodin promotes invasive 3D cancer cell migration via regulated interactions with Ena/VASP and SCAR/WAVE Carmona, G Perera, U Gillett, C Naba, A Law, A-L Sharma, V P Wang, J Wyckoff, J Balsamo, M Mosis, F De Piano, M Monypenny, J Woodman, N McConnell, R E Mouneimne, G Van Hemelrijck, M Cao, Y Condeelis, J Hynes, R O Gertler, F B Krause, M Oncogene Original Article Cancer invasion is a hallmark of metastasis. The mesenchymal mode of cancer cell invasion is mediated by elongated membrane protrusions driven by the assembly of branched F-actin networks. How deregulation of actin regulators promotes cancer cell invasion is still enigmatic. We report that increased expression and membrane localization of the actin regulator Lamellipodin correlate with reduced metastasis-free survival and poor prognosis in breast cancer patients. In agreement, we find that Lamellipodin depletion reduced lung metastasis in an orthotopic mouse breast cancer model. Invasive 3D cancer cell migration as well as invadopodia formation and matrix degradation was impaired upon Lamellipodin depletion. Mechanistically, we show that Lamellipodin promotes invasive 3D cancer cell migration via both actin-elongating Ena/VASP proteins and the Scar/WAVE complex, which stimulates actin branching. In contrast, Lamellipodin interaction with Scar/WAVE but not with Ena/VASP is required for random 2D cell migration. We identified a phosphorylation-dependent mechanism that regulates selective recruitment of these effectors to Lamellipodin: Abl-mediated Lamellipodin phosphorylation promotes its association with both Scar/WAVE and Ena/VASP, whereas Src-dependent phosphorylation enhances binding to Scar/WAVE but not to Ena/VASP. Through these selective, regulated interactions Lamellipodin mediates directional sensing of epidermal growth factor (EGF) gradients and invasive 3D migration of breast cancer cells. Our findings imply that increased Lamellipodin levels enhance Ena/VASP and Scar/WAVE activities at the plasma membrane to promote 3D invasion and metastasis. Nature Publishing Group 2016-09-29 2016-03-21 /pmc/articles/PMC5031503/ /pubmed/26996666 http://dx.doi.org/10.1038/onc.2016.47 Text en Copyright © 2016 Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Original Article
Carmona, G
Perera, U
Gillett, C
Naba, A
Law, A-L
Sharma, V P
Wang, J
Wyckoff, J
Balsamo, M
Mosis, F
De Piano, M
Monypenny, J
Woodman, N
McConnell, R E
Mouneimne, G
Van Hemelrijck, M
Cao, Y
Condeelis, J
Hynes, R O
Gertler, F B
Krause, M
Lamellipodin promotes invasive 3D cancer cell migration via regulated interactions with Ena/VASP and SCAR/WAVE
title Lamellipodin promotes invasive 3D cancer cell migration via regulated interactions with Ena/VASP and SCAR/WAVE
title_full Lamellipodin promotes invasive 3D cancer cell migration via regulated interactions with Ena/VASP and SCAR/WAVE
title_fullStr Lamellipodin promotes invasive 3D cancer cell migration via regulated interactions with Ena/VASP and SCAR/WAVE
title_full_unstemmed Lamellipodin promotes invasive 3D cancer cell migration via regulated interactions with Ena/VASP and SCAR/WAVE
title_short Lamellipodin promotes invasive 3D cancer cell migration via regulated interactions with Ena/VASP and SCAR/WAVE
title_sort lamellipodin promotes invasive 3d cancer cell migration via regulated interactions with ena/vasp and scar/wave
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5031503/
https://www.ncbi.nlm.nih.gov/pubmed/26996666
http://dx.doi.org/10.1038/onc.2016.47
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