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Molecular Poltergeists: Mitochondrial DNA Copies (numts) in Sequenced Nuclear Genomes

PLoS Genetics · 2010 · Vol. 6(2) · pp. e1000834–e1000834
Einat Hazkani‐CovoRaymond M. ZellerWilliam Martin

Abstract

The natural transfer of DNA from mitochondria to the nucleus generates nuclear copies of mitochondrial DNA (numts) and is an ongoing evolutionary process, as genome sequences attest. In humans, five different numts cause genetic disease and a dozen human loci are polymorphic for the presence of numts, underscoring the rapid rate at which mitochondrial sequences reach the nucleus over evolutionary time. In the laboratory and in nature, numts enter the nuclear DNA via non-homolgous end joining (NHEJ) at double-strand breaks (DSBs). The frequency of numt insertions among 85 sequenced eukaryotic genomes reveal that numt content is strongly correlated with genome size, suggesting that the numt insertion rate might be limited by DSB frequency. Polymorphic numts in humans link maternally inherited mitochondrial genotypes to nuclear DNA haplotypes during the past, offering new opportunities to associate nuclear markers with mitochondrial markers back in time.

Mitochondrial Function and PathologyMetabolism and Genetic DisordersGenomics and Phylogenetic StudiesMitochondrial DNABiologyGenomeGeneticsNuclear DNAHaplotypeDNANuclear geneDNA sequencingGenome evolution

MeSH terms

Cell NucleusDNA, MitochondrialHumansGenome, HumanMutagenesis, InsertionalSequence Analysis, DNAGene DosageMitochondrial Diseases

Funding

  • National Science Foundation
  • National Evolutionary Synthesis Center
  • Deutsche Forschungsgemeinschaft
Citations
670
FWCI
16.09
field-weighted impact
References
97
Percentile
100%
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Citations per year
References
Endosymbiotic gene transfer: organelle genomes forge eukaryotic chromosomes
Nature Reviews Genetics · 2004 · 1,592 citations
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