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A 9-kDa matricellular SPARC fragment released by cathepsin D exhibits pro-tumor activity in the triple-negative breast cancer microenvironment

Rationale: Alternative therapeutic strategies based on tumor-specific molecular targets are urgently needed for triple-negative breast cancer (TNBC). The protease cathepsin D (cath-D) is a marker of poor prognosis in TNBC and a tumor-specific extracellular target for antibody-based therapy. The iden...

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Autores principales: Alcaraz, Lindsay B, Mallavialle, Aude, David, Timothée, Derocq, Danielle, Delolme, Frédéric, Dieryckx, Cindy, Mollevi, Caroline, Boissière-Michot, Florence, Simony-Lafontaine, Joëlle, Du Manoir, Stanislas, Huesgen, Pitter F., Overall, Christopher M., Tartare-Deckert, Sophie, Jacot, William, Chardès, Thierry, Guiu, Séverine, Roger, Pascal, Reinheckel, Thomas, Moali, Catherine, Liaudet-Coopman, Emmanuelle
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8120228/
https://www.ncbi.nlm.nih.gov/pubmed/33995652
http://dx.doi.org/10.7150/thno.58254
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author Alcaraz, Lindsay B
Mallavialle, Aude
David, Timothée
Derocq, Danielle
Delolme, Frédéric
Dieryckx, Cindy
Mollevi, Caroline
Boissière-Michot, Florence
Simony-Lafontaine, Joëlle
Du Manoir, Stanislas
Huesgen, Pitter F.
Overall, Christopher M.
Tartare-Deckert, Sophie
Jacot, William
Chardès, Thierry
Guiu, Séverine
Roger, Pascal
Reinheckel, Thomas
Moali, Catherine
Liaudet-Coopman, Emmanuelle
author_facet Alcaraz, Lindsay B
Mallavialle, Aude
David, Timothée
Derocq, Danielle
Delolme, Frédéric
Dieryckx, Cindy
Mollevi, Caroline
Boissière-Michot, Florence
Simony-Lafontaine, Joëlle
Du Manoir, Stanislas
Huesgen, Pitter F.
Overall, Christopher M.
Tartare-Deckert, Sophie
Jacot, William
Chardès, Thierry
Guiu, Séverine
Roger, Pascal
Reinheckel, Thomas
Moali, Catherine
Liaudet-Coopman, Emmanuelle
author_sort Alcaraz, Lindsay B
collection PubMed
description Rationale: Alternative therapeutic strategies based on tumor-specific molecular targets are urgently needed for triple-negative breast cancer (TNBC). The protease cathepsin D (cath-D) is a marker of poor prognosis in TNBC and a tumor-specific extracellular target for antibody-based therapy. The identification of cath-D substrates is crucial for the mechanistic understanding of its role in the TNBC microenvironment and future therapeutic developments. Methods: The cath-D substrate repertoire was investigated by N-Terminal Amine Isotopic Labeling of Substrates (TAILS)-based degradome analysis in a co-culture assay of TNBC cells and breast fibroblasts. Substrates were validated by amino-terminal oriented mass spectrometry of substrates (ATOMS). Cath-D and SPARC expression in TNBC was examined using an online transcriptomic survival analysis, tissue micro-arrays, TNBC cell lines, patient-derived xenografts (PDX), human TNBC samples, and mammary tumors from MMTV-PyMT Ctsd(-/-)knock-out mice. The biological role of SPARC and its fragments in TNBC were studied using immunohistochemistry and immunofluorescence analysis, gene expression knockdown, co-culture assays, western blot analysis, RT-quantitative PCR, adhesion assays, Transwell motility, trans-endothelial migration and invasion assays. Results: TAILS analysis showed that the matricellular protein SPARC is a substrate of extracellular cath-D. In vitro, cath-D induced limited proteolysis of SPARC C-terminal extracellular Ca(2+) binding domain at acidic pH, leading to the production of SPARC fragments (34-, 27-, 16-, 9-, and 6-kDa). Similarly, cath-D secreted by TNBC cells cleaved fibroblast- and cancer cell-derived SPARC at the tumor pericellular acidic pH. SPARC cleavage also occurred in TNBC tumors. Among these fragments, only the 9-kDa SPARC fragment inhibited TNBC cell adhesion and spreading on fibronectin, and stimulated their migration, endothelial transmigration, and invasion. Conclusions: Our study establishes a novel crosstalk between proteases and matricellular proteins in the tumor microenvironment through limited SPARC proteolysis, revealing a novel targetable 9-kDa bioactive SPARC fragment for new TNBC treatments. Our study will pave the way for the development of strategies for targeting bioactive fragments from matricellular proteins in TNBC.
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spelling pubmed-81202282021-05-15 A 9-kDa matricellular SPARC fragment released by cathepsin D exhibits pro-tumor activity in the triple-negative breast cancer microenvironment Alcaraz, Lindsay B Mallavialle, Aude David, Timothée Derocq, Danielle Delolme, Frédéric Dieryckx, Cindy Mollevi, Caroline Boissière-Michot, Florence Simony-Lafontaine, Joëlle Du Manoir, Stanislas Huesgen, Pitter F. Overall, Christopher M. Tartare-Deckert, Sophie Jacot, William Chardès, Thierry Guiu, Séverine Roger, Pascal Reinheckel, Thomas Moali, Catherine Liaudet-Coopman, Emmanuelle Theranostics Research Paper Rationale: Alternative therapeutic strategies based on tumor-specific molecular targets are urgently needed for triple-negative breast cancer (TNBC). The protease cathepsin D (cath-D) is a marker of poor prognosis in TNBC and a tumor-specific extracellular target for antibody-based therapy. The identification of cath-D substrates is crucial for the mechanistic understanding of its role in the TNBC microenvironment and future therapeutic developments. Methods: The cath-D substrate repertoire was investigated by N-Terminal Amine Isotopic Labeling of Substrates (TAILS)-based degradome analysis in a co-culture assay of TNBC cells and breast fibroblasts. Substrates were validated by amino-terminal oriented mass spectrometry of substrates (ATOMS). Cath-D and SPARC expression in TNBC was examined using an online transcriptomic survival analysis, tissue micro-arrays, TNBC cell lines, patient-derived xenografts (PDX), human TNBC samples, and mammary tumors from MMTV-PyMT Ctsd(-/-)knock-out mice. The biological role of SPARC and its fragments in TNBC were studied using immunohistochemistry and immunofluorescence analysis, gene expression knockdown, co-culture assays, western blot analysis, RT-quantitative PCR, adhesion assays, Transwell motility, trans-endothelial migration and invasion assays. Results: TAILS analysis showed that the matricellular protein SPARC is a substrate of extracellular cath-D. In vitro, cath-D induced limited proteolysis of SPARC C-terminal extracellular Ca(2+) binding domain at acidic pH, leading to the production of SPARC fragments (34-, 27-, 16-, 9-, and 6-kDa). Similarly, cath-D secreted by TNBC cells cleaved fibroblast- and cancer cell-derived SPARC at the tumor pericellular acidic pH. SPARC cleavage also occurred in TNBC tumors. Among these fragments, only the 9-kDa SPARC fragment inhibited TNBC cell adhesion and spreading on fibronectin, and stimulated their migration, endothelial transmigration, and invasion. Conclusions: Our study establishes a novel crosstalk between proteases and matricellular proteins in the tumor microenvironment through limited SPARC proteolysis, revealing a novel targetable 9-kDa bioactive SPARC fragment for new TNBC treatments. Our study will pave the way for the development of strategies for targeting bioactive fragments from matricellular proteins in TNBC. Ivyspring International Publisher 2021-04-15 /pmc/articles/PMC8120228/ /pubmed/33995652 http://dx.doi.org/10.7150/thno.58254 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Alcaraz, Lindsay B
Mallavialle, Aude
David, Timothée
Derocq, Danielle
Delolme, Frédéric
Dieryckx, Cindy
Mollevi, Caroline
Boissière-Michot, Florence
Simony-Lafontaine, Joëlle
Du Manoir, Stanislas
Huesgen, Pitter F.
Overall, Christopher M.
Tartare-Deckert, Sophie
Jacot, William
Chardès, Thierry
Guiu, Séverine
Roger, Pascal
Reinheckel, Thomas
Moali, Catherine
Liaudet-Coopman, Emmanuelle
A 9-kDa matricellular SPARC fragment released by cathepsin D exhibits pro-tumor activity in the triple-negative breast cancer microenvironment
title A 9-kDa matricellular SPARC fragment released by cathepsin D exhibits pro-tumor activity in the triple-negative breast cancer microenvironment
title_full A 9-kDa matricellular SPARC fragment released by cathepsin D exhibits pro-tumor activity in the triple-negative breast cancer microenvironment
title_fullStr A 9-kDa matricellular SPARC fragment released by cathepsin D exhibits pro-tumor activity in the triple-negative breast cancer microenvironment
title_full_unstemmed A 9-kDa matricellular SPARC fragment released by cathepsin D exhibits pro-tumor activity in the triple-negative breast cancer microenvironment
title_short A 9-kDa matricellular SPARC fragment released by cathepsin D exhibits pro-tumor activity in the triple-negative breast cancer microenvironment
title_sort 9-kda matricellular sparc fragment released by cathepsin d exhibits pro-tumor activity in the triple-negative breast cancer microenvironment
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8120228/
https://www.ncbi.nlm.nih.gov/pubmed/33995652
http://dx.doi.org/10.7150/thno.58254
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