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Esophageal 3D organoids of MPV17(-/-) mouse model of mitochondrial DNA depletion show epithelial cell plasticity and telomere attrition

Esophageal squamous cell carcinoma (ESCC) is an aggressive cancer with late-stage detection and poor prognosis. This emphasizes the need to identify new markers for early diagnosis and treatment. Altered mitochondrial genome (mtDNA) content in primary tumors correlates with poor patient prognosis. H...

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Autores principales: Guha, Manti, Srinivasan, Satish, Sheehan, Maura M., Kijima, Takashi, Ruthel, Gordon, Whelan, Kelly, Tanaka, Koji, Klein-Szanto, Andres, Chandramouleeswaran, Prasanna M., Nakagawa, Hiroshi, Avadhani, Narayan G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6817447/
https://www.ncbi.nlm.nih.gov/pubmed/31692873
http://dx.doi.org/10.18632/oncotarget.27264
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author Guha, Manti
Srinivasan, Satish
Sheehan, Maura M.
Kijima, Takashi
Ruthel, Gordon
Whelan, Kelly
Tanaka, Koji
Klein-Szanto, Andres
Chandramouleeswaran, Prasanna M.
Nakagawa, Hiroshi
Avadhani, Narayan G.
author_facet Guha, Manti
Srinivasan, Satish
Sheehan, Maura M.
Kijima, Takashi
Ruthel, Gordon
Whelan, Kelly
Tanaka, Koji
Klein-Szanto, Andres
Chandramouleeswaran, Prasanna M.
Nakagawa, Hiroshi
Avadhani, Narayan G.
author_sort Guha, Manti
collection PubMed
description Esophageal squamous cell carcinoma (ESCC) is an aggressive cancer with late-stage detection and poor prognosis. This emphasizes the need to identify new markers for early diagnosis and treatment. Altered mitochondrial genome (mtDNA) content in primary tumors correlates with poor patient prognosis. Here we used three-dimensional (3D) organoids of esophageal epithelial cells (EECs) from the MPV17(-/-) mouse model of mtDNA depletion to investigate the contribution of reduced mtDNA content in ESCC oncogenicity. To test if mtDNA defects are a contributing factor in ESCC, we used oncogenic stimuli such as ESCC carcinogen 4-nitroquinoline oxide (4-NQO) treatment, or expressing p53(R175H) oncogenic driver mutation. We observed that EECs and 3D-organoids with mtDNA depletion had cellular, morphological and genetic alterations typical of an oncogenic transition. Furthermore, mitochondrial dysfunction induced cellular transformation is accompanied by elevated mitochondrial fission protein, DRP1 and pharmacologic inhibition of mitochondrial fission by mDivi-1 in the MPV17(-/-) organoids reversed the phenotype to that of normal EEC organoids. Our studies show that mtDNA copy number depletion, activates a mitochondrial retrograde response, potentiates telomere defects, and increases the oncogenic susceptibility towards ESCC. Furthermore, mtDNA depletion driven cellular plasticity is mediated via altered mitochondrial fission-fusion dynamics.
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spelling pubmed-68174472019-11-05 Esophageal 3D organoids of MPV17(-/-) mouse model of mitochondrial DNA depletion show epithelial cell plasticity and telomere attrition Guha, Manti Srinivasan, Satish Sheehan, Maura M. Kijima, Takashi Ruthel, Gordon Whelan, Kelly Tanaka, Koji Klein-Szanto, Andres Chandramouleeswaran, Prasanna M. Nakagawa, Hiroshi Avadhani, Narayan G. Oncotarget Research Paper Esophageal squamous cell carcinoma (ESCC) is an aggressive cancer with late-stage detection and poor prognosis. This emphasizes the need to identify new markers for early diagnosis and treatment. Altered mitochondrial genome (mtDNA) content in primary tumors correlates with poor patient prognosis. Here we used three-dimensional (3D) organoids of esophageal epithelial cells (EECs) from the MPV17(-/-) mouse model of mtDNA depletion to investigate the contribution of reduced mtDNA content in ESCC oncogenicity. To test if mtDNA defects are a contributing factor in ESCC, we used oncogenic stimuli such as ESCC carcinogen 4-nitroquinoline oxide (4-NQO) treatment, or expressing p53(R175H) oncogenic driver mutation. We observed that EECs and 3D-organoids with mtDNA depletion had cellular, morphological and genetic alterations typical of an oncogenic transition. Furthermore, mitochondrial dysfunction induced cellular transformation is accompanied by elevated mitochondrial fission protein, DRP1 and pharmacologic inhibition of mitochondrial fission by mDivi-1 in the MPV17(-/-) organoids reversed the phenotype to that of normal EEC organoids. Our studies show that mtDNA copy number depletion, activates a mitochondrial retrograde response, potentiates telomere defects, and increases the oncogenic susceptibility towards ESCC. Furthermore, mtDNA depletion driven cellular plasticity is mediated via altered mitochondrial fission-fusion dynamics. Impact Journals LLC 2019-10-22 /pmc/articles/PMC6817447/ /pubmed/31692873 http://dx.doi.org/10.18632/oncotarget.27264 Text en http://creativecommons.org/licenses/by/3.0/ Copyright: Guha et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Guha, Manti
Srinivasan, Satish
Sheehan, Maura M.
Kijima, Takashi
Ruthel, Gordon
Whelan, Kelly
Tanaka, Koji
Klein-Szanto, Andres
Chandramouleeswaran, Prasanna M.
Nakagawa, Hiroshi
Avadhani, Narayan G.
Esophageal 3D organoids of MPV17(-/-) mouse model of mitochondrial DNA depletion show epithelial cell plasticity and telomere attrition
title Esophageal 3D organoids of MPV17(-/-) mouse model of mitochondrial DNA depletion show epithelial cell plasticity and telomere attrition
title_full Esophageal 3D organoids of MPV17(-/-) mouse model of mitochondrial DNA depletion show epithelial cell plasticity and telomere attrition
title_fullStr Esophageal 3D organoids of MPV17(-/-) mouse model of mitochondrial DNA depletion show epithelial cell plasticity and telomere attrition
title_full_unstemmed Esophageal 3D organoids of MPV17(-/-) mouse model of mitochondrial DNA depletion show epithelial cell plasticity and telomere attrition
title_short Esophageal 3D organoids of MPV17(-/-) mouse model of mitochondrial DNA depletion show epithelial cell plasticity and telomere attrition
title_sort esophageal 3d organoids of mpv17(-/-) mouse model of mitochondrial dna depletion show epithelial cell plasticity and telomere attrition
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6817447/
https://www.ncbi.nlm.nih.gov/pubmed/31692873
http://dx.doi.org/10.18632/oncotarget.27264
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