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Altered Expression of Mitoferrin and Frataxin, Larger Labile Iron Pool and Greater Mitochondrial DNA Damage in the Skeletal Muscle of Older Adults

Mitochondrial dysfunction and iron (Fe) dyshomeostasis are invoked among the mechanisms contributing to muscle aging, possibly via a detrimental mitochondrial–iron feed-forward loop. We quantified the labile Fe pool, Fe isotopes, and the expression of mitochondrial Fe handling proteins in muscle bio...

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Autores principales: Picca, Anna, Saini, Sunil K., Mankowski, Robert T., Kamenov, George, Anton, Stephen D., Manini, Todd M., Buford, Thomas W., Wohlgemuth, Stephanie E., Xiao, Rui, Calvani, Riccardo, Coelho-Júnior, Hélio José, Landi, Francesco, Bernabei, Roberto, Hood, David A., Marzetti, Emanuele, Leeuwenburgh, Christiaan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7760001/
https://www.ncbi.nlm.nih.gov/pubmed/33276460
http://dx.doi.org/10.3390/cells9122579
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author Picca, Anna
Saini, Sunil K.
Mankowski, Robert T.
Kamenov, George
Anton, Stephen D.
Manini, Todd M.
Buford, Thomas W.
Wohlgemuth, Stephanie E.
Xiao, Rui
Calvani, Riccardo
Coelho-Júnior, Hélio José
Landi, Francesco
Bernabei, Roberto
Hood, David A.
Marzetti, Emanuele
Leeuwenburgh, Christiaan
author_facet Picca, Anna
Saini, Sunil K.
Mankowski, Robert T.
Kamenov, George
Anton, Stephen D.
Manini, Todd M.
Buford, Thomas W.
Wohlgemuth, Stephanie E.
Xiao, Rui
Calvani, Riccardo
Coelho-Júnior, Hélio José
Landi, Francesco
Bernabei, Roberto
Hood, David A.
Marzetti, Emanuele
Leeuwenburgh, Christiaan
author_sort Picca, Anna
collection PubMed
description Mitochondrial dysfunction and iron (Fe) dyshomeostasis are invoked among the mechanisms contributing to muscle aging, possibly via a detrimental mitochondrial–iron feed-forward loop. We quantified the labile Fe pool, Fe isotopes, and the expression of mitochondrial Fe handling proteins in muscle biopsies obtained from young and older adults. The expression of key proteins of mitochondrial quality control (MQC) and the abundance of the mitochondrial DNA common deletion (mtDNA(4977)) were also assessed. An inverse association was found between total Fe and the heavier Fe isotope ((56)Fe), indicating an increase in labile Fe abundance in cells with greater Fe content. The highest levels of labile Fe were detected in old participants with a Short Physical Performance Battery (SPPB) score ≤ 7 (low-functioning, LF). Protein levels of mitoferrin and frataxin were, respectively, higher and lower in the LF group relative to young participants and older adults with SPPB scores ≥ 11 (high-functioning, HF). The mtDNA(4977) relative abundance was greater in old than in young participants, regardless of SPPB category. Higher protein levels of Pink1 were detected in LF participants compared with young and HF groups. Finally, the ratio between lipidated and non-lipidated microtubule-associated protein 1A/1B-light chain 3 (i.e., LC3B II/I), as well as p62 protein expression was lower in old participants regardless of SPPB scores. Our findings indicate that cellular and mitochondrial Fe homeostasis is perturbed in the aged muscle (especially in LF older adults), as reflected by altered levels of mitoferrin and frataxin, which, together with MQC derangements, might contribute to loss of mtDNA stability.
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spelling pubmed-77600012020-12-26 Altered Expression of Mitoferrin and Frataxin, Larger Labile Iron Pool and Greater Mitochondrial DNA Damage in the Skeletal Muscle of Older Adults Picca, Anna Saini, Sunil K. Mankowski, Robert T. Kamenov, George Anton, Stephen D. Manini, Todd M. Buford, Thomas W. Wohlgemuth, Stephanie E. Xiao, Rui Calvani, Riccardo Coelho-Júnior, Hélio José Landi, Francesco Bernabei, Roberto Hood, David A. Marzetti, Emanuele Leeuwenburgh, Christiaan Cells Article Mitochondrial dysfunction and iron (Fe) dyshomeostasis are invoked among the mechanisms contributing to muscle aging, possibly via a detrimental mitochondrial–iron feed-forward loop. We quantified the labile Fe pool, Fe isotopes, and the expression of mitochondrial Fe handling proteins in muscle biopsies obtained from young and older adults. The expression of key proteins of mitochondrial quality control (MQC) and the abundance of the mitochondrial DNA common deletion (mtDNA(4977)) were also assessed. An inverse association was found between total Fe and the heavier Fe isotope ((56)Fe), indicating an increase in labile Fe abundance in cells with greater Fe content. The highest levels of labile Fe were detected in old participants with a Short Physical Performance Battery (SPPB) score ≤ 7 (low-functioning, LF). Protein levels of mitoferrin and frataxin were, respectively, higher and lower in the LF group relative to young participants and older adults with SPPB scores ≥ 11 (high-functioning, HF). The mtDNA(4977) relative abundance was greater in old than in young participants, regardless of SPPB category. Higher protein levels of Pink1 were detected in LF participants compared with young and HF groups. Finally, the ratio between lipidated and non-lipidated microtubule-associated protein 1A/1B-light chain 3 (i.e., LC3B II/I), as well as p62 protein expression was lower in old participants regardless of SPPB scores. Our findings indicate that cellular and mitochondrial Fe homeostasis is perturbed in the aged muscle (especially in LF older adults), as reflected by altered levels of mitoferrin and frataxin, which, together with MQC derangements, might contribute to loss of mtDNA stability. MDPI 2020-12-02 /pmc/articles/PMC7760001/ /pubmed/33276460 http://dx.doi.org/10.3390/cells9122579 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Picca, Anna
Saini, Sunil K.
Mankowski, Robert T.
Kamenov, George
Anton, Stephen D.
Manini, Todd M.
Buford, Thomas W.
Wohlgemuth, Stephanie E.
Xiao, Rui
Calvani, Riccardo
Coelho-Júnior, Hélio José
Landi, Francesco
Bernabei, Roberto
Hood, David A.
Marzetti, Emanuele
Leeuwenburgh, Christiaan
Altered Expression of Mitoferrin and Frataxin, Larger Labile Iron Pool and Greater Mitochondrial DNA Damage in the Skeletal Muscle of Older Adults
title Altered Expression of Mitoferrin and Frataxin, Larger Labile Iron Pool and Greater Mitochondrial DNA Damage in the Skeletal Muscle of Older Adults
title_full Altered Expression of Mitoferrin and Frataxin, Larger Labile Iron Pool and Greater Mitochondrial DNA Damage in the Skeletal Muscle of Older Adults
title_fullStr Altered Expression of Mitoferrin and Frataxin, Larger Labile Iron Pool and Greater Mitochondrial DNA Damage in the Skeletal Muscle of Older Adults
title_full_unstemmed Altered Expression of Mitoferrin and Frataxin, Larger Labile Iron Pool and Greater Mitochondrial DNA Damage in the Skeletal Muscle of Older Adults
title_short Altered Expression of Mitoferrin and Frataxin, Larger Labile Iron Pool and Greater Mitochondrial DNA Damage in the Skeletal Muscle of Older Adults
title_sort altered expression of mitoferrin and frataxin, larger labile iron pool and greater mitochondrial dna damage in the skeletal muscle of older adults
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7760001/
https://www.ncbi.nlm.nih.gov/pubmed/33276460
http://dx.doi.org/10.3390/cells9122579
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