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Regulation of defective mitochondrial DNA accumulation and transmission in C. elegans by the programmed cell death and aging pathways

The heteroplasmic state of eukaryotic cells allows for cryptic accumulation of defective mitochondrial genomes (mtDNA). ‘Purifying selection’ mechanisms operate to remove such dysfunctional mtDNAs. We found that activators of programmed cell death (PCD), including the CED-3 and CSP-1 caspases, the B...

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Autores principales: Flowers, Sagen, Kothari, Rushali, Torres Cleuren, Yamila N, Alcorn, Melissa R, Ewe, Chee Kiang, Alok, Geneva, Fiallo, Samantha L, Joshi, Pradeep M, Rothman, Joel H
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10545429/
https://www.ncbi.nlm.nih.gov/pubmed/37782016
http://dx.doi.org/10.7554/eLife.79725
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author Flowers, Sagen
Kothari, Rushali
Torres Cleuren, Yamila N
Alcorn, Melissa R
Ewe, Chee Kiang
Alok, Geneva
Fiallo, Samantha L
Joshi, Pradeep M
Rothman, Joel H
author_facet Flowers, Sagen
Kothari, Rushali
Torres Cleuren, Yamila N
Alcorn, Melissa R
Ewe, Chee Kiang
Alok, Geneva
Fiallo, Samantha L
Joshi, Pradeep M
Rothman, Joel H
author_sort Flowers, Sagen
collection PubMed
description The heteroplasmic state of eukaryotic cells allows for cryptic accumulation of defective mitochondrial genomes (mtDNA). ‘Purifying selection’ mechanisms operate to remove such dysfunctional mtDNAs. We found that activators of programmed cell death (PCD), including the CED-3 and CSP-1 caspases, the BH3-only protein CED-13, and PCD corpse engulfment factors, are required in C. elegans to attenuate germline abundance of a 3.1-kb mtDNA deletion mutation, uaDf5, which is normally stably maintained in heteroplasmy with wildtype mtDNA. In contrast, removal of CED-4/Apaf1 or a mutation in the CED-4-interacting prodomain of CED-3, do not increase accumulation of the defective mtDNA, suggesting induction of a non-canonical germline PCD mechanism or non-apoptotic action of the CED-13/caspase axis. We also found that the abundance of germline mtDNA(uaDf5) reproducibly increases with age of the mothers. This effect is transmitted to the offspring of mothers, with only partial intergenerational removal of the defective mtDNA. In mutants with elevated mtDNA(uaDf5) levels, this removal is enhanced in older mothers, suggesting an age-dependent mechanism of mtDNA quality control. Indeed, we found that both steady-state and age-dependent accumulation rates of uaDf5 are markedly decreased in long-lived, and increased in short-lived, mutants. These findings reveal that regulators of both PCD and the aging program are required for germline mtDNA quality control and its intergenerational transmission.
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spelling pubmed-105454292023-10-03 Regulation of defective mitochondrial DNA accumulation and transmission in C. elegans by the programmed cell death and aging pathways Flowers, Sagen Kothari, Rushali Torres Cleuren, Yamila N Alcorn, Melissa R Ewe, Chee Kiang Alok, Geneva Fiallo, Samantha L Joshi, Pradeep M Rothman, Joel H eLife Cell Biology The heteroplasmic state of eukaryotic cells allows for cryptic accumulation of defective mitochondrial genomes (mtDNA). ‘Purifying selection’ mechanisms operate to remove such dysfunctional mtDNAs. We found that activators of programmed cell death (PCD), including the CED-3 and CSP-1 caspases, the BH3-only protein CED-13, and PCD corpse engulfment factors, are required in C. elegans to attenuate germline abundance of a 3.1-kb mtDNA deletion mutation, uaDf5, which is normally stably maintained in heteroplasmy with wildtype mtDNA. In contrast, removal of CED-4/Apaf1 or a mutation in the CED-4-interacting prodomain of CED-3, do not increase accumulation of the defective mtDNA, suggesting induction of a non-canonical germline PCD mechanism or non-apoptotic action of the CED-13/caspase axis. We also found that the abundance of germline mtDNA(uaDf5) reproducibly increases with age of the mothers. This effect is transmitted to the offspring of mothers, with only partial intergenerational removal of the defective mtDNA. In mutants with elevated mtDNA(uaDf5) levels, this removal is enhanced in older mothers, suggesting an age-dependent mechanism of mtDNA quality control. Indeed, we found that both steady-state and age-dependent accumulation rates of uaDf5 are markedly decreased in long-lived, and increased in short-lived, mutants. These findings reveal that regulators of both PCD and the aging program are required for germline mtDNA quality control and its intergenerational transmission. eLife Sciences Publications, Ltd 2023-10-02 /pmc/articles/PMC10545429/ /pubmed/37782016 http://dx.doi.org/10.7554/eLife.79725 Text en © 2023, Flowers et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Flowers, Sagen
Kothari, Rushali
Torres Cleuren, Yamila N
Alcorn, Melissa R
Ewe, Chee Kiang
Alok, Geneva
Fiallo, Samantha L
Joshi, Pradeep M
Rothman, Joel H
Regulation of defective mitochondrial DNA accumulation and transmission in C. elegans by the programmed cell death and aging pathways
title Regulation of defective mitochondrial DNA accumulation and transmission in C. elegans by the programmed cell death and aging pathways
title_full Regulation of defective mitochondrial DNA accumulation and transmission in C. elegans by the programmed cell death and aging pathways
title_fullStr Regulation of defective mitochondrial DNA accumulation and transmission in C. elegans by the programmed cell death and aging pathways
title_full_unstemmed Regulation of defective mitochondrial DNA accumulation and transmission in C. elegans by the programmed cell death and aging pathways
title_short Regulation of defective mitochondrial DNA accumulation and transmission in C. elegans by the programmed cell death and aging pathways
title_sort regulation of defective mitochondrial dna accumulation and transmission in c. elegans by the programmed cell death and aging pathways
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10545429/
https://www.ncbi.nlm.nih.gov/pubmed/37782016
http://dx.doi.org/10.7554/eLife.79725
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