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[DOI: 10.1126/science.1112125]

Reports



Mitochondrial DNA Mutations, Oxidative Stress, and Apoptosis in Mammalian
Aging

G. C. Kujoth,1 A. Hiona,2 T. D. Pugh,3 S. Someya,4 K. Panzer,1 S. E.
Wohlgemuth,2 T. Hofer,2 A. Y. Seo,2 R. Sullivan,5 W. A. Jobling,6 J. D.
Morrow,7 H. Van Remmen,8 J. M. Sedivy,6 T. Yamasoba,9 M. Tanokura,4 R.
Weindruch,3 C. Leeuwenburgh,2 T. A. Prolla1*

Mutations in mitochondrial DNA (mtDNA) accumulate in tissues of mammalian
species and have been hypothesized to contribute to aging. We show that mice
expressing a proofreading-deficient version of the mitochondrial DNA
polymerase g (POLG) accumulate mtDNA mutations and display features of
accelerated aging. Accumulation of mtDNA mutations was not associated with
increased markers of oxidative stress or a defect in cellular proliferation,
but was correlated with the induction of apoptotic markers, particularly in
tissues characterized by rapid cellular turnover. The levels of apoptotic
markers were also found to increase during aging in normal mice. Thus,
accumulation of mtDNA mutations that promote apoptosis may be a central
mechanism driving mammalian aging.

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