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  1. Mutated mtDNA distribution in exponentially growing cell cultures and how the segregation rate is increased by the mitochondrial compartments.Christine Reder - 2001 - Acta Biotheoretica 49 (4):235-245.
    A cell contains many copies of mitochondrial DNA. The distribution of a mitochondrial gene mutation in a cell culture is governed by the way in which the mtDNA molecules of a cell are replicated and partitioned between the two daughter cells during mitosis. Assuming that this partition process is random, we describe the evolution of the mitochondrial genetic state of a cell culture. The mutated mtDNA is ultimately segregated and the rate of the trend to segregation is relatively slow. It (...)
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  • Known Unknowns of Mammalian Mitochondrial DNA Maintenance.Jaakko L. O. Pohjoismäki, Josefin M. E. Forslund, Steffi Goffart, Rubén Torregrosa-Muñumer & Sjoerd Wanrooij - 2018 - Bioessays 40 (9):1800102.
    Mammalian mitochondrial DNA (mtDNA) replication and repair have been studied intensively for the last 50 years. Although recently advances in elucidating the molecular mechanisms of mtDNA maintenance and the proteins involved in these have been made, there are disturbing gaps between the existing theoretical models and experimental observations. Conflicting data and hypotheses exist about the role of RNA and ribonucleotides in mtDNA replication, but also about the priming of replication and the formation of pathological rearrangements. In the presented review, we (...)
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  • Known Unknowns of Mammalian Mitochondrial DNA Maintenance.Jaakko L. O. Pohjoismäki, Josefin M. E. Forslund, Steffi Goffart, Rubén Torregrosa-Muñumer & Sjoerd Wanrooij - 2018 - Bioessays 40 (9):1800102.
    Mammalian mitochondrial DNA (mtDNA) replication and repair have been studied intensively for the last 50 years. Although recently advances in elucidating the molecular mechanisms of mtDNA maintenance and the proteins involved in these have been made, there are disturbing gaps between the existing theoretical models and experimental observations. Conflicting data and hypotheses exist about the role of RNA and ribonucleotides in mtDNA replication, but also about the priming of replication and the formation of pathological rearrangements. In the presented review, we (...)
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