Mitochondrial Factors in the Cell Nucleus.

DNA damage hypoxia mito-nuclear crosstalk oxidative stress stress response unfolded stress response

Journal

International journal of molecular sciences
ISSN: 1422-0067
Titre abrégé: Int J Mol Sci
Pays: Switzerland
ID NLM: 101092791

Informations de publication

Date de publication:
04 Sep 2023
Historique:
received: 18 07 2023
revised: 31 08 2023
accepted: 31 08 2023
medline: 11 9 2023
pubmed: 9 9 2023
entrez: 9 9 2023
Statut: epublish

Résumé

The origin of eukaryotic organisms involved the integration of mitochondria into the ancestor cell, with a massive gene transfer from the original proteobacterium to the host nucleus. Thus, mitochondrial performance relies on a mosaic of nuclear gene products from a variety of genomes. The concerted regulation of their synthesis is necessary for metabolic housekeeping and stress response. This governance involves crosstalk between mitochondrial, cytoplasmic, and nuclear factors. While anterograde and retrograde regulation preserve mitochondrial homeostasis, the mitochondria can modulate a wide set of nuclear genes in response to an extensive variety of conditions, whose response mechanisms often merge. In this review, we summarise how mitochondrial metabolites and proteins-encoded either in the nucleus or in the organelle-target the cell nucleus and exert different actions modulating gene expression and the chromatin state, or even causing DNA fragmentation in response to common stress conditions, such as hypoxia, oxidative stress, unfolded protein stress, and DNA damage.

Identifiants

pubmed: 37686461
pii: ijms241713656
doi: 10.3390/ijms241713656
pmc: PMC10563088
pii:
doi:

Substances chimiques

Nuclear Proteins 0
Chromatin 0

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Subventions

Organisme : Consejería de Economía y Conocimiento, Junta de Andalucía
ID : P18-FR-3487

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Auteurs

Katiuska González-Arzola (K)

Centro Andaluz de Biología Molecular y Medicina Regenerativa-CABIMER, Consejo Superior de Investigaciones Científicas-Universidad de Sevilla-Universidad Pablo de Olavide, 41092 Seville, Spain.
Departamento de Bioquímica Vegetal y Biología Molecular, Universidad de Sevilla, 41012 Seville, Spain.

Antonio Díaz-Quintana (A)

Departamento de Bioquímica Vegetal y Biología Molecular, Universidad de Sevilla, 41012 Seville, Spain.
Instituto de Investigaciones Químicas-cicCartuja, Universidad de Sevilla-C.S.I.C, 41092 Seville, Spain.

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