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Mitochondrial DNA Mutations Induce Mitochondrial Dysfunction, Apoptosis and Sarcopenia in Skeletal Muscle of Mitochondrial DNA Mutator Mice

Asimina Hiona, Alberto Sanz, Gregory C. Kujoth, Reinald Pamplona, Arnold Y. Seo, Tim Hofer, Shinichi Someya, Takuya Miyakawa, Nakayama Chie, Alejandro K. Samhan‐Arias, Stéphane Servais, Jamie L. Barger, Manuel Portero-Otı́n, Masaru Tanokura, Tomas A. Prolla

PLoS ONE · 2010 · ▲ 271 citations

Abstract

BACKGROUND: Aging results in a progressive loss of skeletal muscle, a condition known as sarcopenia. Mitochondrial DNA (mtDNA) mutations accumulate with aging in skeletal muscle and correlate with muscle loss, although no causal relationship has been established. METHODOLOGY/PRINCIPAL FINDINGS: We investigated the relationship between mtDNA mutations and sarcopenia at the gene expression and biochemical levels using a mouse model that expresses a proofreading-deficient version (D257A) of the mitochondrial DNA Polymerase gamma, resulting in increased spontaneous mtDNA mutation rates. Gene expression profiling of D257A mice followed by Parametric Analysis of Gene Set Enrichment (PAGE) indicates that the D257A mutation is associated with a profound downregulation of gene sets associated with mitochondrial function. At the biochemical level, sarcopenia in D257A mice is associated with a marked reduction (35-50%) in the content of electron transport chain (ETC) complexes I, III and IV, all of which are partly encoded by mtDNA. D257A mice display impaired mitochondrial bioenergetics associated with compromised state-3 respiration, lower ATP content and a resulting decrease in mitochondrial membrane potential (Deltapsim). Surprisingly, mitochondrial dysfunction(definition) was not accompanied by an increase in mitochondrial reactive oxygen species (ROS) production or oxidative damage. CONCLUSIONS/SIGNIFICANCE: These findings demonstrate that mutations in mtDNA can be causal in sarcopenia by affecting the assembly of functional ETC complexes, the lack of which provokes a decrease in oxidative phosphorylation, without an increase in oxidative stress, and ultimately, skeletal muscle apoptosis and sarcopenia.

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OpenAlex
DOI
10.1371/journal.pone.0011468
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2026-06-06 MST

Cite this

APA
Hiona, A., Sanz, A., Kujoth, G.C., Pamplona, R., Seo, A.Y., Hofer, T., Someya, S., Miyakawa, T., Chie, N., Samhan‐Arias, A.K., Servais, S., Barger, J.L., Portero-Otı́n, M., Tanokura, M., Prolla, T.A., &amp; Leeuwenburgh, C. (2010). Mitochondrial DNA Mutations Induce Mitochondrial Dysfunction, Apoptosis and Sarcopenia in Skeletal Muscle of Mitochondrial DNA Mutator Mice. <em>PLoS ONE</em>. https://doi.org/10.1371/journal.pone.0011468
Vancouver
Hiona A, Sanz A, Kujoth GC, Pamplona R, Seo AY, Hofer T, et al. Mitochondrial DNA Mutations Induce Mitochondrial Dysfunction, Apoptosis and Sarcopenia in Skeletal Muscle of Mitochondrial DNA Mutator Mice. PLoS ONE. 2010. doi:10.1371/journal.pone.0011468.
BibTeX
@article{asimina2010Mitoch, title = {Mitochondrial DNA Mutations Induce Mitochondrial Dysfunction, Apoptosis and Sarcopenia in Skeletal Muscle of Mitochondrial DNA Mutator Mice}, author = {Asimina Hiona and Alberto Sanz and Gregory C. Kujoth and Reinald Pamplona and Arnold Y. Seo and Tim Hofer and Shinichi Someya and Takuya Miyakawa and Nakayama Chie and Alejandro K. Samhan‐Arias and Stéphane Servais and Jamie L. Barger and Manuel Portero-Otı́n and Masaru Tanokura and Tomas A. Prolla and Christiaan Leeuwenburgh}, journal = {PLoS ONE}, year = {2010}, doi = {10.1371/journal.pone.0011468}, }

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