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RKIP and HMGA2 regulate breast tumor survival and metastasis through Lysyl Oxidase and Syndecan-2

Elucidating targets of physiological tumor metastasis suppressors can highlight key signaling pathways leading to invasion and metastasis. To identify downstream targets of the metastasis suppressor Raf Kinase Inhibitory Protein (RKIP/PEBP1), we utilized an integrated approach based upon statistical...

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Autores principales: Sun, Miao, Gomes, Suzana, Chen, Ping, Frankenberger, Casey A, Sankarasharma, Devipriya, Chung, Christine H, Chada, Kiran K, Rosner, Marsha Rich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4096871/
https://www.ncbi.nlm.nih.gov/pubmed/23975428
http://dx.doi.org/10.1038/onc.2013.328
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author Sun, Miao
Gomes, Suzana
Chen, Ping
Frankenberger, Casey A
Sankarasharma, Devipriya
Chung, Christine H
Chada, Kiran K
Rosner, Marsha Rich
author_facet Sun, Miao
Gomes, Suzana
Chen, Ping
Frankenberger, Casey A
Sankarasharma, Devipriya
Chung, Christine H
Chada, Kiran K
Rosner, Marsha Rich
author_sort Sun, Miao
collection PubMed
description Elucidating targets of physiological tumor metastasis suppressors can highlight key signaling pathways leading to invasion and metastasis. To identify downstream targets of the metastasis suppressor Raf Kinase Inhibitory Protein (RKIP/PEBP1), we utilized an integrated approach based upon statistical analysis of tumor gene expression data combined with experimental validation. Previous studies from our laboratory identified the architectural transcription factor and oncogene, HMGA2, as a target of inhibition by RKIP. Here we identify two signaling pathways that promote HMGA2-driven metastasis. Using both human breast tumor cells and an MMTV-Wnt mouse breast tumor model, we show that RKIP induces and HMGA2 inhibits expression of miR-200b; miR-200b directly inhibits expression of lysyl oxidase (LOX), leading to decreased invasion. RKIP also inhibits syndecan-2 (SDC2), which is aberrantly expressed in breast cancer, via down-regulation of HMGA2; but this mechanism is independent of miR-200. Depletion of SDC2 induces apoptosis and suppresses breast tumor growth and metastasis in mouse xenografts. RKIP, LOX, and SDC2 are coordinately regulated and collectively encompass a prognostic signature for metastasis-free survival in ER-negative breast cancer patients. Taken together, our findings reveal two novel signaling pathways targeted by the metastasis suppressor RKIP that regulate remodeling of the extracellular matrix and tumor survival.
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spelling pubmed-40968712015-01-03 RKIP and HMGA2 regulate breast tumor survival and metastasis through Lysyl Oxidase and Syndecan-2 Sun, Miao Gomes, Suzana Chen, Ping Frankenberger, Casey A Sankarasharma, Devipriya Chung, Christine H Chada, Kiran K Rosner, Marsha Rich Oncogene Article Elucidating targets of physiological tumor metastasis suppressors can highlight key signaling pathways leading to invasion and metastasis. To identify downstream targets of the metastasis suppressor Raf Kinase Inhibitory Protein (RKIP/PEBP1), we utilized an integrated approach based upon statistical analysis of tumor gene expression data combined with experimental validation. Previous studies from our laboratory identified the architectural transcription factor and oncogene, HMGA2, as a target of inhibition by RKIP. Here we identify two signaling pathways that promote HMGA2-driven metastasis. Using both human breast tumor cells and an MMTV-Wnt mouse breast tumor model, we show that RKIP induces and HMGA2 inhibits expression of miR-200b; miR-200b directly inhibits expression of lysyl oxidase (LOX), leading to decreased invasion. RKIP also inhibits syndecan-2 (SDC2), which is aberrantly expressed in breast cancer, via down-regulation of HMGA2; but this mechanism is independent of miR-200. Depletion of SDC2 induces apoptosis and suppresses breast tumor growth and metastasis in mouse xenografts. RKIP, LOX, and SDC2 are coordinately regulated and collectively encompass a prognostic signature for metastasis-free survival in ER-negative breast cancer patients. Taken together, our findings reveal two novel signaling pathways targeted by the metastasis suppressor RKIP that regulate remodeling of the extracellular matrix and tumor survival. 2013-08-26 2014-07-03 /pmc/articles/PMC4096871/ /pubmed/23975428 http://dx.doi.org/10.1038/onc.2013.328 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Sun, Miao
Gomes, Suzana
Chen, Ping
Frankenberger, Casey A
Sankarasharma, Devipriya
Chung, Christine H
Chada, Kiran K
Rosner, Marsha Rich
RKIP and HMGA2 regulate breast tumor survival and metastasis through Lysyl Oxidase and Syndecan-2
title RKIP and HMGA2 regulate breast tumor survival and metastasis through Lysyl Oxidase and Syndecan-2
title_full RKIP and HMGA2 regulate breast tumor survival and metastasis through Lysyl Oxidase and Syndecan-2
title_fullStr RKIP and HMGA2 regulate breast tumor survival and metastasis through Lysyl Oxidase and Syndecan-2
title_full_unstemmed RKIP and HMGA2 regulate breast tumor survival and metastasis through Lysyl Oxidase and Syndecan-2
title_short RKIP and HMGA2 regulate breast tumor survival and metastasis through Lysyl Oxidase and Syndecan-2
title_sort rkip and hmga2 regulate breast tumor survival and metastasis through lysyl oxidase and syndecan-2
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4096871/
https://www.ncbi.nlm.nih.gov/pubmed/23975428
http://dx.doi.org/10.1038/onc.2013.328
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