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G1P3 (IFI6), a mitochondrial localised antiapoptotic protein, promotes metastatic potential of breast cancer cells through mtROS

BACKGROUND: Redox deregulations are ubiquitous in cancer cells. However, the role of mitochondrial redox deregulation in metastasis remains unclear. In breast cancer, upregulation of mitochondrial antiapoptotic protein G1P3 (IFI6) was associated with poor distance metastasis-free survival (DMFS). Th...

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Autores principales: Cheriyath, Venugopalan, Kaur, Jaspreet, Davenport, Anne, Khalel, Ashjan, Chowdhury, Nobel, Gaddipati, Lalitha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6035266/
https://www.ncbi.nlm.nih.gov/pubmed/29899394
http://dx.doi.org/10.1038/s41416-018-0137-3
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author Cheriyath, Venugopalan
Kaur, Jaspreet
Davenport, Anne
Khalel, Ashjan
Chowdhury, Nobel
Gaddipati, Lalitha
author_facet Cheriyath, Venugopalan
Kaur, Jaspreet
Davenport, Anne
Khalel, Ashjan
Chowdhury, Nobel
Gaddipati, Lalitha
author_sort Cheriyath, Venugopalan
collection PubMed
description BACKGROUND: Redox deregulations are ubiquitous in cancer cells. However, the role of mitochondrial redox deregulation in metastasis remains unclear. In breast cancer, upregulation of mitochondrial antiapoptotic protein G1P3 (IFI6) was associated with poor distance metastasis-free survival (DMFS). Therefore, we tested the hypothesis that G1P3-induced mitochondrial redox deregulation confers metastatic potentials in breast cancer cells. METHODS: Cell migration and invasion assays; confocal and immunofluorescence microscopy; and Illumina HumanHT-12 BeadChip to assess gene expression. RESULTS: Consequent to its localisation on inner-mitochondrial membrane, mtROS were higher in G1P3-expressing cells (MCF-7(G1P3)). G1P3-overexpressing cells migrated and invaded faster than the vector controls with increased number of filopodia and F-actin bundles (p ≤ 0.05). mtROS suppression with H(2)O(2) scavengers and mitochondrial-specific antioxidants significantly decreased migratory structures and reversed G1P3-induced migration and invasion (p ≤ 0.05). Knocking down G1P3 decreased both migration and migratory structures in MCF-7(G1P3) cells. Moreover, gene networks involved in redox regulation, metastasis and actin remodelling were upregulated in MCF-7(G1P3) cells. CONCLUSIONS: G1P3-induced mtROS have a direct role in migratory structure formation and nuclear gene expression to promote breast cancer cell metastasis. Therefore, interrupting mitochondrial functions of G1P3 may improve clinical outcomes in breast cancer patients.
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spelling pubmed-60352662019-07-03 G1P3 (IFI6), a mitochondrial localised antiapoptotic protein, promotes metastatic potential of breast cancer cells through mtROS Cheriyath, Venugopalan Kaur, Jaspreet Davenport, Anne Khalel, Ashjan Chowdhury, Nobel Gaddipati, Lalitha Br J Cancer Article BACKGROUND: Redox deregulations are ubiquitous in cancer cells. However, the role of mitochondrial redox deregulation in metastasis remains unclear. In breast cancer, upregulation of mitochondrial antiapoptotic protein G1P3 (IFI6) was associated with poor distance metastasis-free survival (DMFS). Therefore, we tested the hypothesis that G1P3-induced mitochondrial redox deregulation confers metastatic potentials in breast cancer cells. METHODS: Cell migration and invasion assays; confocal and immunofluorescence microscopy; and Illumina HumanHT-12 BeadChip to assess gene expression. RESULTS: Consequent to its localisation on inner-mitochondrial membrane, mtROS were higher in G1P3-expressing cells (MCF-7(G1P3)). G1P3-overexpressing cells migrated and invaded faster than the vector controls with increased number of filopodia and F-actin bundles (p ≤ 0.05). mtROS suppression with H(2)O(2) scavengers and mitochondrial-specific antioxidants significantly decreased migratory structures and reversed G1P3-induced migration and invasion (p ≤ 0.05). Knocking down G1P3 decreased both migration and migratory structures in MCF-7(G1P3) cells. Moreover, gene networks involved in redox regulation, metastasis and actin remodelling were upregulated in MCF-7(G1P3) cells. CONCLUSIONS: G1P3-induced mtROS have a direct role in migratory structure formation and nuclear gene expression to promote breast cancer cell metastasis. Therefore, interrupting mitochondrial functions of G1P3 may improve clinical outcomes in breast cancer patients. Nature Publishing Group UK 2018-06-14 2018-07-03 /pmc/articles/PMC6035266/ /pubmed/29899394 http://dx.doi.org/10.1038/s41416-018-0137-3 Text en © Cancer Research UK 2018 https://creativecommons.org/licenses/by/4.0/This work is published under the standard license to publish agreement. After 12 months the work will become freely available and the license terms will switch to a Creative Commons Attribution 4.0 International (CC BY 4.0).
spellingShingle Article
Cheriyath, Venugopalan
Kaur, Jaspreet
Davenport, Anne
Khalel, Ashjan
Chowdhury, Nobel
Gaddipati, Lalitha
G1P3 (IFI6), a mitochondrial localised antiapoptotic protein, promotes metastatic potential of breast cancer cells through mtROS
title G1P3 (IFI6), a mitochondrial localised antiapoptotic protein, promotes metastatic potential of breast cancer cells through mtROS
title_full G1P3 (IFI6), a mitochondrial localised antiapoptotic protein, promotes metastatic potential of breast cancer cells through mtROS
title_fullStr G1P3 (IFI6), a mitochondrial localised antiapoptotic protein, promotes metastatic potential of breast cancer cells through mtROS
title_full_unstemmed G1P3 (IFI6), a mitochondrial localised antiapoptotic protein, promotes metastatic potential of breast cancer cells through mtROS
title_short G1P3 (IFI6), a mitochondrial localised antiapoptotic protein, promotes metastatic potential of breast cancer cells through mtROS
title_sort g1p3 (ifi6), a mitochondrial localised antiapoptotic protein, promotes metastatic potential of breast cancer cells through mtros
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6035266/
https://www.ncbi.nlm.nih.gov/pubmed/29899394
http://dx.doi.org/10.1038/s41416-018-0137-3
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