Proceedings of the National Academy of Sciences · 2007 · 81 citations · 36 references
Iron MetabolismGeneticsMolecular BiologyMtdna NucleoidsMolecular GeneticsMitochondrial BiologyRedox BiologyOxidative StressYeast Aco1pMitochondrial BiogenesisMitochondrial StructureYeastMitochondrial DnaBiochemistryDna ReplicationYeast Aconitase BindsReductive StressMitochondrial FunctionNatural SciencesCellular BiochemistryMetabolismMedicine
Aconitase (Aco1p) is a multifunctional protein: It is an enzyme of the tricarboxylic acid cycle. In animal cells, Aco1p also is a cytosolic protein binding to mRNAs to regulate iron metabolism. In yeast, Aco1p was identified as a component of mtDNA nucleoids. Here we show that yeast Aco1p protects mtDNA from excessive accumulation of point mutations and ssDNA breaks and suppresses reductive recombination of mtDNA. Aconitase binds to both ds- and ssDNA, with a preference for GC-containing sequences. Therefore, mitochondria are opportunistic organelles that seize proteins, such as metabolic enzymes, for construction of the nucleoid, an mtDNA maintenance/segregation apparatus.
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Composition and Dynamics of Human Mitochondrial Nucleoids
Nuria Garrido, Lorena Griparić, Eija Jokitalo et al. · Molecular Biology of the Cell · 2003 · 363 citations · Full text
Aconitase Couples Metabolic Regulation to Mitochondrial DNA Maintenance
Xin Jie Chen, Xiaowen Wang, Brett A. Kaufman et al. · Science · 2005 · 313 citations
Reductive Stress, Mitochondrial Dna Maintenance, Mitophagy +15