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Random genetic drift determines the level of mutant mtDNA in human primary oocytes.


ABSTRACT: We measured the proportion of mutant mtDNA (mutation load) in 82 primary oocytes from a woman who harbored the A3243G mtDNA mutation. The frequency distribution of mutation load indicates that random drift is the principal mechanism that determines the level of mutant mtDNA within individual oocytes.

SUBMITTER: Brown DT 

PROVIDER: S-EPMC1235288 | biostudies-literature | 2001 Feb

REPOSITORIES: biostudies-literature

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Random genetic drift determines the level of mutant mtDNA in human primary oocytes.

Brown D T DT   Samuels D C DC   Michael E M EM   Turnbull D M DM   Chinnery P F PF  

American journal of human genetics 20001229 2


We measured the proportion of mutant mtDNA (mutation load) in 82 primary oocytes from a woman who harbored the A3243G mtDNA mutation. The frequency distribution of mutation load indicates that random drift is the principal mechanism that determines the level of mutant mtDNA within individual oocytes. ...[more]

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