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1.
Mitochondrion ; 64: 73-81, 2022 05.
Artigo em Inglês | MEDLINE | ID: mdl-35346867

RESUMO

The correlation between mitochondrial function and oncogenesis is complex and is not fully understood. Here we determine the importance of mitochondrial-linked pyrimidine synthesis for the aggressiveness of cancer cells. The enzyme dihydroorotate dehydrogenase (DHODH) links oxidative phosphorylation to de novo synthesis of pyrimidines. We demonstrate that an inhibition of DHODH results in a respiration-independent significant increase of anchorage-independent growth but does not affect DNA repair ability. Instead, we show an autophagy-independent increase of lysosomes. The results of this study suggest that inhibition of mitochondrial-linked pyrimidine synthesis in cancer cells results in a more aggressive tumor phenotype.


Assuntos
Oxirredutases atuantes sobre Doadores de Grupo CH-CH , Carcinogênese , Di-Hidro-Orotato Desidrogenase , Humanos , Lisossomos , Oxirredutases atuantes sobre Doadores de Grupo CH-CH/genética , Pirimidinas
2.
Mech Ageing Dev ; 134(10): 460-6, 2013 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-24012633

RESUMO

Helicobacter pylori infection is an important factor for the development of atrophic gastritis and gastric carcinogenesis. However, the mechanisms explaining the effects of H. pylori infection are not fully elucidated. H. pylori infection is known to induce genetic instability in both nuclear and mitochondrial DNA of gastric epithelial cells. The mutagenic effect of H. pylori infection on nuclear DNA is known to be a consequence, in part, of a down-regulation of expression and activity of major DNA repair pathways. In this study, we demonstrate that H. pylori infection of gastric adenocarcinoma cells causes mtDNA mutations and a decrease of mtDNA content. Consequently, we show a decrease of respiration coupled ATP turnover and respiratory capacity and accordingly a lower level and activity of complex I of the electron transport chain. We wanted to investigate if the increased mutational load in the mitochondrial genome was caused by down-regulation of mitochondrial DNA repair pathways. We lowered the expression of APE-1 and YB-1, which are believed to be involved in mitochondrial base excision repair and mismatch repair. Our results suggest that both APE-1 and YB-1 are involved in mtDNA repair during H. pylori infection, furthermore, the results demonstrate that multiple DNA repair activities are involved in protecting mtDNA during infection.


Assuntos
Reparo do DNA , Mucosa Gástrica/metabolismo , Instabilidade Genômica , Infecções por Helicobacter/metabolismo , Helicobacter pylori/metabolismo , Mitocôndrias/metabolismo , Linhagem Celular Tumoral , DNA Mitocondrial/genética , DNA Mitocondrial/metabolismo , Genoma Mitocondrial , Infecções por Helicobacter/genética , Infecções por Helicobacter/patologia , Humanos , Mitocôndrias/genética , Mitocôndrias/patologia , Mutação , Estômago/microbiologia , Estômago/patologia
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