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Título: | Oncogene-induced senescence mitochondrial metabolism and bioenergetics drive the secretory phenotype: further characterization and comparison with other senescence-inducing stimuli |
Autor: | Marmisolle, Inés Chacón, Eliana Mansilla, Santiago Ruiz, Santiago Bresque, Mariana Martínez, Jennyfer Martínez-Zamudio, Ricardo Iván Jie, Liu Finkel, Toren Escande, Carlos Castro, Laura Quijano, Celia |
Tipo: | Artículo |
Palabras clave: | Senescence, Mitochondria, Bioenergetics, Fatty acid oxidation, TCA cycle, RAS oncogene |
Descriptores: | SENESCENCIA CELULAR, FENOTIPO SECRETOR ASOCIADO A LA SENESCENCIA, FIBROBLASTOS, METABOLISMO ENERGÉTICO |
Fecha de publicación: | 2025 |
Resumen: | Cellular senescence is characterized by proliferation arrest and a senescence-associated secretory phenotype
(SASP), that plays a role in aging and the progression of various age-related diseases. Although various metabolic
alterations have been reported, no consensus exists regarding mitochondrial bioenergetics. Here we compared
mitochondrial metabolism of human fibroblasts after inducing senescence with different stimuli: the oxidant
hydrogen peroxide (H2O2), the genotoxic doxorubicin, serial passage, or expression of the H-RASG12V oncogene
(RAS).
In senescence induced by H2O2, doxorubicin or serial passage a decrease in respiratory control ratio (RCR) and
coupling efficiency was noted, in relation to control cells. On the contrary, oncogene-induced senescent cells had
an overall increase in respiration rates, RCR, spare respiratory capacity and coupling efficiency. In oncogeneinduced
senescence (OIS) the increase in respiration rates was accompanied by an increase in fatty acid catabolism,
AMPK activation, and a persistent DNA damage response (DDR), that were not present in senescent cells
induced by either H2O2 or doxorubicin. Inhibition of AMPK reduced mitochondrial oxygen consumption and
secretion of proinflammatory cytokines in OIS.
Assessment of enzymes involved in acetyl-CoA metabolism in OIS showed a 3- to 7.5-fold increase in pyruvate
dehydrogenase complex (PDH), a 40% inhibition of mitochondrial aconitase, increased phosphorylation and
activation of ATP-citrate lyase (ACLY), and inhibition of acetyl-CoA carboxylase (ACC). There was also a significant
increase in expression and nuclear levels of the deacetylase sirtuin 6 (SIRT6). These changes can influence
the sub-cellular distribution of acetyl-CoA and modulate protein acetylation reactions in the cytoplasm
and nuclei. In fact, ACLY inhibition reduced histone 3 acetylation (H3K9Ac) in OIS and secretion of SASP
components.
In summary, our data show marked heterogeneity in mitochondrial energy metabolism of senescent cells,
depending on the inducing stimulus, reveal new metabolic features of oncogene-induced senescent cells and
identify AMPK and ACLY as potential targets for SASP modulation. |
Editorial: | Elsevier |
EN: | Redox Biology, 2025:82 |
Citación: | Marmisolle I, Chacón E, Mansilla S y otrods. Oncogene-induced senescence mitochondrial metabolism and bioenergetics drive the secretory phenotype: further characterization and comparison with other senescence-inducing stimuli. Redox Biology [en línea] 2025. 19 p. |
ISSN: | 2213-2317 |
Licencia: | Licencia Creative Commons Atribución - No Comercial - Sin Derivadas (CC - By-NC-ND 4.0) |
Aparece en las colecciones: | Publicaciones Académicas y Científicas - Facultad de Medicina |
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Redox Biology 2025.pdf | Oncogene-induced senescence mitochondrial metabolism and bioenergetics | 10,5 MB | Adobe PDF | Visualizar/Abrir |
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