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Mitochondrial fission factor is a novel Myc-dependent regulator of mitochondrial permeability in cancer()

BACKGROUND: Mitochondrial functions are exploited in cancer and provide a validated therapeutic target. However, how this process is regulated has remained mostly elusive and the identification of new pathways that control mitochondrial integrity in cancer is an urgent priority. METHODS: We studied...

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Autores principales: Seo, Jae Ho, Agarwal, Ekta, Chae, Young Chan, Lee, Yu Geon, Garlick, David S., Storaci, Alessandra Maria, Ferrero, Stefano, Gaudioso, Gabriella, Gianelli, Umberto, Vaira, Valentina, Altieri, Dario C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6838406/
https://www.ncbi.nlm.nih.gov/pubmed/31542392
http://dx.doi.org/10.1016/j.ebiom.2019.09.017
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author Seo, Jae Ho
Agarwal, Ekta
Chae, Young Chan
Lee, Yu Geon
Garlick, David S.
Storaci, Alessandra Maria
Ferrero, Stefano
Gaudioso, Gabriella
Gianelli, Umberto
Vaira, Valentina
Altieri, Dario C.
author_facet Seo, Jae Ho
Agarwal, Ekta
Chae, Young Chan
Lee, Yu Geon
Garlick, David S.
Storaci, Alessandra Maria
Ferrero, Stefano
Gaudioso, Gabriella
Gianelli, Umberto
Vaira, Valentina
Altieri, Dario C.
author_sort Seo, Jae Ho
collection PubMed
description BACKGROUND: Mitochondrial functions are exploited in cancer and provide a validated therapeutic target. However, how this process is regulated has remained mostly elusive and the identification of new pathways that control mitochondrial integrity in cancer is an urgent priority. METHODS: We studied clinically-annotated patient series of primary and metastatic prostate cancer, representative cases of multiple myeloma (MM) and publicly available genetic databases. Gene regulation studies involved chromatin immunoprecipitation, PCR amplification and Western blotting of conditional Myc-expressing cell lines. Transient or stable gene silencing was used to quantify mitochondrial functions in bioenergetics, outer membrane permeability, Ca(2+) homeostasis, redox balance and cell death. Tumorigenicity was assessed by cell proliferation, colony formation and xenograft tumour growth. FINDINGS: We identified Mitochondrial Fission Factor (MFF) as a novel transcriptional target of oncogenic Myc overexpressed in primary and metastatic cancer, compared to normal tissues. Biochemically, MFF isoforms, MFF1 and MFF2 associate with the Voltage-Dependent Anion Channel-1 (VDAC1) at the mitochondrial outer membrane, in vivo. Disruption of this complex by MFF silencing induces general collapse of mitochondrial functions with increased outer membrane permeability, loss of inner membrane potential, Ca(2+) unbalance, bioenergetics defects and activation of cell death pathways. In turn, this inhibits tumour cell proliferation, suppresses colony formation and reduces xenograft tumour growth in mice. INTERPRETATION: An MFF-VDAC1 complex is a novel regulator of mitochondrial integrity and actionable therapeutic target in cancer.
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spelling pubmed-68384062019-11-12 Mitochondrial fission factor is a novel Myc-dependent regulator of mitochondrial permeability in cancer() Seo, Jae Ho Agarwal, Ekta Chae, Young Chan Lee, Yu Geon Garlick, David S. Storaci, Alessandra Maria Ferrero, Stefano Gaudioso, Gabriella Gianelli, Umberto Vaira, Valentina Altieri, Dario C. EBioMedicine Research paper BACKGROUND: Mitochondrial functions are exploited in cancer and provide a validated therapeutic target. However, how this process is regulated has remained mostly elusive and the identification of new pathways that control mitochondrial integrity in cancer is an urgent priority. METHODS: We studied clinically-annotated patient series of primary and metastatic prostate cancer, representative cases of multiple myeloma (MM) and publicly available genetic databases. Gene regulation studies involved chromatin immunoprecipitation, PCR amplification and Western blotting of conditional Myc-expressing cell lines. Transient or stable gene silencing was used to quantify mitochondrial functions in bioenergetics, outer membrane permeability, Ca(2+) homeostasis, redox balance and cell death. Tumorigenicity was assessed by cell proliferation, colony formation and xenograft tumour growth. FINDINGS: We identified Mitochondrial Fission Factor (MFF) as a novel transcriptional target of oncogenic Myc overexpressed in primary and metastatic cancer, compared to normal tissues. Biochemically, MFF isoforms, MFF1 and MFF2 associate with the Voltage-Dependent Anion Channel-1 (VDAC1) at the mitochondrial outer membrane, in vivo. Disruption of this complex by MFF silencing induces general collapse of mitochondrial functions with increased outer membrane permeability, loss of inner membrane potential, Ca(2+) unbalance, bioenergetics defects and activation of cell death pathways. In turn, this inhibits tumour cell proliferation, suppresses colony formation and reduces xenograft tumour growth in mice. INTERPRETATION: An MFF-VDAC1 complex is a novel regulator of mitochondrial integrity and actionable therapeutic target in cancer. Elsevier 2019-09-18 /pmc/articles/PMC6838406/ /pubmed/31542392 http://dx.doi.org/10.1016/j.ebiom.2019.09.017 Text en © 2019 The Authors. Published by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Seo, Jae Ho
Agarwal, Ekta
Chae, Young Chan
Lee, Yu Geon
Garlick, David S.
Storaci, Alessandra Maria
Ferrero, Stefano
Gaudioso, Gabriella
Gianelli, Umberto
Vaira, Valentina
Altieri, Dario C.
Mitochondrial fission factor is a novel Myc-dependent regulator of mitochondrial permeability in cancer()
title Mitochondrial fission factor is a novel Myc-dependent regulator of mitochondrial permeability in cancer()
title_full Mitochondrial fission factor is a novel Myc-dependent regulator of mitochondrial permeability in cancer()
title_fullStr Mitochondrial fission factor is a novel Myc-dependent regulator of mitochondrial permeability in cancer()
title_full_unstemmed Mitochondrial fission factor is a novel Myc-dependent regulator of mitochondrial permeability in cancer()
title_short Mitochondrial fission factor is a novel Myc-dependent regulator of mitochondrial permeability in cancer()
title_sort mitochondrial fission factor is a novel myc-dependent regulator of mitochondrial permeability in cancer()
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6838406/
https://www.ncbi.nlm.nih.gov/pubmed/31542392
http://dx.doi.org/10.1016/j.ebiom.2019.09.017
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