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Novel cross-talk between IGF-IR and DDR1 regulates IGF-IR trafficking, signaling and biological responses

The insulin-like growth factor-I receptor (IGF-IR), plays a key role in regulating mammalian development and growth, and is frequently deregulated in cancer contributing to tumor initiation and progression. Discoidin domain receptor 1 (DDR1), a collagen receptor tyrosine-kinase, is as well frequentl...

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Autores principales: Malaguarnera, Roberta, Nicolosi, Maria Luisa, Sacco, Antonella, Morcavallo, Alaide, Vella, Veronica, Voci, Concetta, Spatuzza, Michela, Xu, Shi-Qiong, Iozzo, Renato V., Vigneri, Riccardo, Morrione, Andrea, Belfiore, Antonino
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599258/
https://www.ncbi.nlm.nih.gov/pubmed/25840417
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author Malaguarnera, Roberta
Nicolosi, Maria Luisa
Sacco, Antonella
Morcavallo, Alaide
Vella, Veronica
Voci, Concetta
Spatuzza, Michela
Xu, Shi-Qiong
Iozzo, Renato V.
Vigneri, Riccardo
Morrione, Andrea
Belfiore, Antonino
author_facet Malaguarnera, Roberta
Nicolosi, Maria Luisa
Sacco, Antonella
Morcavallo, Alaide
Vella, Veronica
Voci, Concetta
Spatuzza, Michela
Xu, Shi-Qiong
Iozzo, Renato V.
Vigneri, Riccardo
Morrione, Andrea
Belfiore, Antonino
author_sort Malaguarnera, Roberta
collection PubMed
description The insulin-like growth factor-I receptor (IGF-IR), plays a key role in regulating mammalian development and growth, and is frequently deregulated in cancer contributing to tumor initiation and progression. Discoidin domain receptor 1 (DDR1), a collagen receptor tyrosine-kinase, is as well frequently overexpressed in cancer and implicated in cancer progression. Thus, we investigated whether a functional cross-talk between the IGF-IR and DDR1 exists and plays any role in cancer progression. Using human breast cancer cells we found that DDR1 constitutively associated with the IGF-IR. However, this interaction was enhanced by IGF-I stimulation, which promoted rapid DDR1 tyrosine-phosphorylation and co-internalization with the IGF-IR. Significantly, DDR1 was critical for IGF-IR endocytosis and trafficking into early endosomes, IGF-IR protein expression and IGF-I intracellular signaling and biological effects, including cell proliferation, migration and colony formation. These biological responses were inhibited by DDR1 silencing and enhanced by DDR1 overexpression. Experiments in mouse fibroblasts co-transfected with the human IGF-IR and DDR1 gave similar results and indicated that, in the absence of IGF-IR, collagen-dependent phosphorylation of DDR1 is impaired. These results demonstrate a critical role of DDR1 in the regulation of IGF-IR action, and identify DDR1 as a novel important target for breast cancers that overexpress IGF-IR.
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spelling pubmed-45992582015-10-26 Novel cross-talk between IGF-IR and DDR1 regulates IGF-IR trafficking, signaling and biological responses Malaguarnera, Roberta Nicolosi, Maria Luisa Sacco, Antonella Morcavallo, Alaide Vella, Veronica Voci, Concetta Spatuzza, Michela Xu, Shi-Qiong Iozzo, Renato V. Vigneri, Riccardo Morrione, Andrea Belfiore, Antonino Oncotarget Research Paper The insulin-like growth factor-I receptor (IGF-IR), plays a key role in regulating mammalian development and growth, and is frequently deregulated in cancer contributing to tumor initiation and progression. Discoidin domain receptor 1 (DDR1), a collagen receptor tyrosine-kinase, is as well frequently overexpressed in cancer and implicated in cancer progression. Thus, we investigated whether a functional cross-talk between the IGF-IR and DDR1 exists and plays any role in cancer progression. Using human breast cancer cells we found that DDR1 constitutively associated with the IGF-IR. However, this interaction was enhanced by IGF-I stimulation, which promoted rapid DDR1 tyrosine-phosphorylation and co-internalization with the IGF-IR. Significantly, DDR1 was critical for IGF-IR endocytosis and trafficking into early endosomes, IGF-IR protein expression and IGF-I intracellular signaling and biological effects, including cell proliferation, migration and colony formation. These biological responses were inhibited by DDR1 silencing and enhanced by DDR1 overexpression. Experiments in mouse fibroblasts co-transfected with the human IGF-IR and DDR1 gave similar results and indicated that, in the absence of IGF-IR, collagen-dependent phosphorylation of DDR1 is impaired. These results demonstrate a critical role of DDR1 in the regulation of IGF-IR action, and identify DDR1 as a novel important target for breast cancers that overexpress IGF-IR. Impact Journals LLC 2015-03-28 /pmc/articles/PMC4599258/ /pubmed/25840417 Text en Copyright: © 2015 Malaguarnera et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Malaguarnera, Roberta
Nicolosi, Maria Luisa
Sacco, Antonella
Morcavallo, Alaide
Vella, Veronica
Voci, Concetta
Spatuzza, Michela
Xu, Shi-Qiong
Iozzo, Renato V.
Vigneri, Riccardo
Morrione, Andrea
Belfiore, Antonino
Novel cross-talk between IGF-IR and DDR1 regulates IGF-IR trafficking, signaling and biological responses
title Novel cross-talk between IGF-IR and DDR1 regulates IGF-IR trafficking, signaling and biological responses
title_full Novel cross-talk between IGF-IR and DDR1 regulates IGF-IR trafficking, signaling and biological responses
title_fullStr Novel cross-talk between IGF-IR and DDR1 regulates IGF-IR trafficking, signaling and biological responses
title_full_unstemmed Novel cross-talk between IGF-IR and DDR1 regulates IGF-IR trafficking, signaling and biological responses
title_short Novel cross-talk between IGF-IR and DDR1 regulates IGF-IR trafficking, signaling and biological responses
title_sort novel cross-talk between igf-ir and ddr1 regulates igf-ir trafficking, signaling and biological responses
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599258/
https://www.ncbi.nlm.nih.gov/pubmed/25840417
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