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Increased burden of mitochondrial DNA deletions and point mutations in early-onset age-related hearing loss in mitochondrial mutator mice.

Citation
Kim, M. -J., et al. “Increased Burden Of Mitochondrial Dna Deletions And Point Mutations In Early-Onset Age-Related Hearing Loss In Mitochondrial Mutator Mice.”. Experimental Gerontology, p. 110675.
Center UCSD-UCLA
Author Mi-Jung Kim, Suraiya Haroon, Guang- Di Chen, Dalian Ding, Jonathan Wanagat, Lijie Liu, Yanping Zhang, Karessa White, Hyo-Jin Park, Chul Han, Kevin Boyd, Isabela Caicedo, Kaitlyn Evans, Paul J Linser, Masaru Tanokura, Tomas Prolla, Richard Salvi, Marc Vermulst, Shinichi Someya
Keywords aging, Hearing loss, Mitochondrial DNA mutations, Mitochondrial disease
Abstract

Mitochondrial DNA (mtDNA) mutations are thought to have a causal role in a variety of age-related neurodegenerative diseases, including age-related hearing loss (AHL). In the current study, we investigated the roles of mtDNA deletions and point mutations in AHL in mitochondrial mutator mice (Polg) that were backcrossed onto CBA/CaJ mice, a well-established model of late-onset AHL. mtDNA deletions accumulated significantly with age in the inner ears of Polg mice, while there were no differences in mtDNA deletion frequencies in the inner ears between 5 and 17 months old Polg mice or 5 months old Polg and Polg mice. mtDNA deletions also accumulated significantly in the inner ears of CBA/CaJ mice during normal aging. In contrast, 5 months old Polg mice displayed a 238-fold increase in mtDNA point mutation frequencies in the inner ears compared to age-matched Polg mice, but there were no differences in mtDNA point mutation frequencies in the inner ears between 5 and 17 months old Polg mice. Seventeen-month-old Polg mice also displayed early-onset severe hearing loss associated with a significant reduction in neural output of the cochlea, while age-matched Polg mice displayed little or no hearing impairment. Consistent with the physiological and mtDNA deletion test result, 17-month-old Polg mice displayed a profound loss of spiral ganglion neurons in the cochlea. Thus, our data suggest that a higher burden of mtDNA point mutations from a young age and age-related accumulation of mtDNA deletions likely contribute to early-onset AHL in mitochondrial mutator mice.

Year of Publication
2019
Journal
Experimental gerontology
Volume
125
Number of Pages
110675
Date Published
12/2019
ISSN Number
1873-6815
DOI
10.1016/j.exger.2019.110675
Alternate Journal
Exp. Gerontol.
PMID
31344454
PMCID
PMC6857812
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