Pervasive within-Mitochondrion Single-Nucleotide Variant Heteroplasmy as Revealed by Single-Mitochondrion Sequencing.

TitlePervasive within-Mitochondrion Single-Nucleotide Variant Heteroplasmy as Revealed by Single-Mitochondrion Sequencing.
Publication TypeJournal Article
Year of Publication2017
AuthorsMorris J, Na Y-J, Zhu H, Lee J-H, Giang H, Ulyanova AV, Baltuch GH, Brem S, H Chen I, Kung DK, Lucas TH, O'Rourke DM, Wolf JA, M Grady S, Sul J-Y, Kim J, Eberwine J
JournalCell Rep
Volume21
Issue10
Pagination2706-2713
Date Published2017 Dec 05
ISSN2211-1247
Abstract

A number of mitochondrial diseases arise from single-nucleotide variant (SNV) accumulation in multiple mitochondria. Here, we present a method for identification of variants present at the single-mitochondrion level in individual mouse and human neuronal cells, allowing for extremely high-resolution study of mitochondrial mutation dynamics. We identified extensive heteroplasmy between individual mitochondrion, along with three high-confidence variants in mouse and one in human that were present in multiple mitochondria across cells. The pattern of variation revealed by single-mitochondrion data shows surprisingly pervasive levels of heteroplasmy in inbred mice. Distribution of SNV loci suggests inheritance of variants across generations, resulting in Poisson jackpot lines with large SNV load. Comparison of human and mouse variants suggests that the two species might employ distinct modes of somatic segregation. Single-mitochondrion resolution revealed mitochondria mutational dynamics that we hypothesize to affect risk probabilities for mutations reaching disease thresholds.

DOI10.1016/j.celrep.2017.11.031
Alternate JournalCell Rep
PubMed ID29212019
PubMed Central IDPMC5771502
Grant ListR33 MH106637 / MH / NIMH NIH HHS / United States
TL1 TR001880 / TR / NCATS NIH HHS / United States
U01 MH098953 / MH / NIMH NIH HHS / United States

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