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Nuclear genes involved in mitochondria-to-nucleus communication in breast cancer cells

BACKGROUND: The interaction of nuclear and mitochondrial genes is an essential feature in maintenance of normal cellular function. Of 82 structural subunits that make up the oxidative phosphorylation system in the mitochondria, mitochondrial DNA (mtDNA) encodes 13 subunits and rest of the subunits a...

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Autores principales: Delsite, Robert, Kachhap, Sushant, Anbazhagan, Ramaswamy, Gabrielson, Edward, Singh, Keshav K
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2002
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC149409/
https://www.ncbi.nlm.nih.gov/pubmed/12495447
http://dx.doi.org/10.1186/1476-4598-1-6
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author Delsite, Robert
Kachhap, Sushant
Anbazhagan, Ramaswamy
Gabrielson, Edward
Singh, Keshav K
author_facet Delsite, Robert
Kachhap, Sushant
Anbazhagan, Ramaswamy
Gabrielson, Edward
Singh, Keshav K
author_sort Delsite, Robert
collection PubMed
description BACKGROUND: The interaction of nuclear and mitochondrial genes is an essential feature in maintenance of normal cellular function. Of 82 structural subunits that make up the oxidative phosphorylation system in the mitochondria, mitochondrial DNA (mtDNA) encodes 13 subunits and rest of the subunits are encoded by nuclear DNA. Mutations in mitochondrial genes encoding the 13 subunits have been reported in a variety of cancers. However, little is known about the nuclear response to impairment of mitochondrial function in human cells. RESULTS: We isolated a Rho(0) (devoid of mtDNA) derivative of a breast cancer cell line. Our study suggests that depletion of mtDNA results in oxidative stress, causing increased lipid peroxidation in breast cancer cells. Using a cDNA microarray we compared differences in the nuclear gene expression profile between a breast cancer cell line (parental Rho(+)) and its Rho(0) derivative impaired in mitochondrial function. Expression of several nuclear genes involved in cell signaling, cell architecture, energy metabolism, cell growth, apoptosis including general transcription factor TFIIH, v-maf, AML1, was induced in Rho(0) cells. Expression of several genes was also down regulated. These include phospholipase C, agouti related protein, PKC gamma, protein tyrosine phosphatase C, phosphodiestarase 1A (cell signaling), PIBF1, cytochrome p450, (metabolism) and cyclin dependent kinase inhibitor p19, and GAP43 (cell growth and differentiation). CONCLUSIONS: Mitochondrial impairment in breast cancer cells results in altered expression of nuclear genes involved in signaling, cellular architecture, metabolism, cell growth and differentiation, and apoptosis. These genes may mediate the cross talk between mitochondria and the nucleus.
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spelling pubmed-1494092003-02-25 Nuclear genes involved in mitochondria-to-nucleus communication in breast cancer cells Delsite, Robert Kachhap, Sushant Anbazhagan, Ramaswamy Gabrielson, Edward Singh, Keshav K Mol Cancer Research BACKGROUND: The interaction of nuclear and mitochondrial genes is an essential feature in maintenance of normal cellular function. Of 82 structural subunits that make up the oxidative phosphorylation system in the mitochondria, mitochondrial DNA (mtDNA) encodes 13 subunits and rest of the subunits are encoded by nuclear DNA. Mutations in mitochondrial genes encoding the 13 subunits have been reported in a variety of cancers. However, little is known about the nuclear response to impairment of mitochondrial function in human cells. RESULTS: We isolated a Rho(0) (devoid of mtDNA) derivative of a breast cancer cell line. Our study suggests that depletion of mtDNA results in oxidative stress, causing increased lipid peroxidation in breast cancer cells. Using a cDNA microarray we compared differences in the nuclear gene expression profile between a breast cancer cell line (parental Rho(+)) and its Rho(0) derivative impaired in mitochondrial function. Expression of several nuclear genes involved in cell signaling, cell architecture, energy metabolism, cell growth, apoptosis including general transcription factor TFIIH, v-maf, AML1, was induced in Rho(0) cells. Expression of several genes was also down regulated. These include phospholipase C, agouti related protein, PKC gamma, protein tyrosine phosphatase C, phosphodiestarase 1A (cell signaling), PIBF1, cytochrome p450, (metabolism) and cyclin dependent kinase inhibitor p19, and GAP43 (cell growth and differentiation). CONCLUSIONS: Mitochondrial impairment in breast cancer cells results in altered expression of nuclear genes involved in signaling, cellular architecture, metabolism, cell growth and differentiation, and apoptosis. These genes may mediate the cross talk between mitochondria and the nucleus. BioMed Central 2002-11-12 /pmc/articles/PMC149409/ /pubmed/12495447 http://dx.doi.org/10.1186/1476-4598-1-6 Text en Copyright © 2002 Delsite et al; licensee BioMed Central Ltd. This is an Open Access article: verbatim copying and redistribution of this article are permitted in all media for any purpose, provided this notice is preserved along with the article's original URL.
spellingShingle Research
Delsite, Robert
Kachhap, Sushant
Anbazhagan, Ramaswamy
Gabrielson, Edward
Singh, Keshav K
Nuclear genes involved in mitochondria-to-nucleus communication in breast cancer cells
title Nuclear genes involved in mitochondria-to-nucleus communication in breast cancer cells
title_full Nuclear genes involved in mitochondria-to-nucleus communication in breast cancer cells
title_fullStr Nuclear genes involved in mitochondria-to-nucleus communication in breast cancer cells
title_full_unstemmed Nuclear genes involved in mitochondria-to-nucleus communication in breast cancer cells
title_short Nuclear genes involved in mitochondria-to-nucleus communication in breast cancer cells
title_sort nuclear genes involved in mitochondria-to-nucleus communication in breast cancer cells
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC149409/
https://www.ncbi.nlm.nih.gov/pubmed/12495447
http://dx.doi.org/10.1186/1476-4598-1-6
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