How does mitochondrial heteroplasmy affect cell proliferation?

Mitochondrial mutations and heteroplasmy have been associated with disease states that result from inadequate cellular energy production. As mitochondrial DNA (mtDNA) encodes many of the polypeptides involved in oxidative phosphorylation (OXPHOS), mtDNA mutations may lower energy production which...

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Main Author: Sutton, Selina Kaye
Language:en
Published: University of Canterbury. Biological Sciences 2008
Subjects:
Online Access:http://hdl.handle.net/10092/1306
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spelling ndltd-canterbury.ac.nz-oai-ir.canterbury.ac.nz-10092-13062015-03-30T15:29:57ZHow does mitochondrial heteroplasmy affect cell proliferation?Sutton, Selina KayemitochondriaDNA mutationdiseaseoxidative phosphorylationcancer cell linecell proliferationpopulation doubling timeMitochondrial mutations and heteroplasmy have been associated with disease states that result from inadequate cellular energy production. As mitochondrial DNA (mtDNA) encodes many of the polypeptides involved in oxidative phosphorylation (OXPHOS), mtDNA mutations may lower energy production which is required for cell division and sustained ATP synthesis. In order to test the relationship between mtDNA mutations and the rate of cell division, a mammary epithelial cancer cell line, MCF-7, is used as a model. Nine proliferate single cell clones have been isolated from MCF-7. Population doubling times of six single cell clones and the MCF-7 stock have been determined. Clones with distinctly different growth rates were selected for mutational analysis. Growth rates of these clones appeared to be different from each other. Using polymerase chain reaction (PCR) and DNA sequencing, three cases of heteroplasmy have been identified in the mitochondrial genes of the MCF-7 stock and four single cell clones (ATPase C9119T, ND6 T14300G, Cytb G15807A). Heteroplasmy present in the Cytb gene is differs between single cell clones. Differences between the growth rates may be indicative of metabolic variations in these single cell clones. The OXPHOS enzymes encoded by the mutated genes were quantified by standard enzymatic assays. The assays demonstrated significant differences in specific activity between the clones, but were not correlated with mitochondrial heteroplasmy. This thesis determines that the differences in specific activity observed between clones is of nuclear origin.University of Canterbury. Biological Sciences2008-09-07T23:20:57Z2008-09-07T23:20:57Z2006Electronic thesis or dissertationTexthttp://hdl.handle.net/10092/1306enNZCUCopyright Selina Kaye Suttonhttp://library.canterbury.ac.nz/thesis/etheses_copyright.shtml
collection NDLTD
language en
sources NDLTD
topic mitochondria
DNA mutation
disease
oxidative phosphorylation
cancer cell line
cell proliferation
population doubling time
spellingShingle mitochondria
DNA mutation
disease
oxidative phosphorylation
cancer cell line
cell proliferation
population doubling time
Sutton, Selina Kaye
How does mitochondrial heteroplasmy affect cell proliferation?
description Mitochondrial mutations and heteroplasmy have been associated with disease states that result from inadequate cellular energy production. As mitochondrial DNA (mtDNA) encodes many of the polypeptides involved in oxidative phosphorylation (OXPHOS), mtDNA mutations may lower energy production which is required for cell division and sustained ATP synthesis. In order to test the relationship between mtDNA mutations and the rate of cell division, a mammary epithelial cancer cell line, MCF-7, is used as a model. Nine proliferate single cell clones have been isolated from MCF-7. Population doubling times of six single cell clones and the MCF-7 stock have been determined. Clones with distinctly different growth rates were selected for mutational analysis. Growth rates of these clones appeared to be different from each other. Using polymerase chain reaction (PCR) and DNA sequencing, three cases of heteroplasmy have been identified in the mitochondrial genes of the MCF-7 stock and four single cell clones (ATPase C9119T, ND6 T14300G, Cytb G15807A). Heteroplasmy present in the Cytb gene is differs between single cell clones. Differences between the growth rates may be indicative of metabolic variations in these single cell clones. The OXPHOS enzymes encoded by the mutated genes were quantified by standard enzymatic assays. The assays demonstrated significant differences in specific activity between the clones, but were not correlated with mitochondrial heteroplasmy. This thesis determines that the differences in specific activity observed between clones is of nuclear origin.
author Sutton, Selina Kaye
author_facet Sutton, Selina Kaye
author_sort Sutton, Selina Kaye
title How does mitochondrial heteroplasmy affect cell proliferation?
title_short How does mitochondrial heteroplasmy affect cell proliferation?
title_full How does mitochondrial heteroplasmy affect cell proliferation?
title_fullStr How does mitochondrial heteroplasmy affect cell proliferation?
title_full_unstemmed How does mitochondrial heteroplasmy affect cell proliferation?
title_sort how does mitochondrial heteroplasmy affect cell proliferation?
publisher University of Canterbury. Biological Sciences
publishDate 2008
url http://hdl.handle.net/10092/1306
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