A lncRNA-mediated metabolic rewiring of cell senescence
Author
Date
2025-06-24Permanent link
http://hdl.handle.net/11351/13618DOI
10.1016/j.celrep.2025.115747
ISSN
2211-1247
WOS
001501902100003
PMID
40408249
Abstract
Despite not proliferating, senescent cells remain metabolically active to maintain the senescence program. However, the mechanisms behind this metabolic reprogramming are not well understood. We identify senescence-induced long noncoding RNA (sin-lncRNA), a previously uncharacterized long noncoding RNA (lncRNA), a key player in this response. While strongly activated in senescence by C/EBPβ, sin-lncRNA loss reinforces the senescence program by altering oxidative phosphorylation and rewiring mitochondrial metabolism. By interacting with dihydrolipoamide S-succinyltransferase (DLST), it facilitates its mitochondrial localization. Depletion of sin-lncRNA causes DLST nuclear translocation, leading to transcriptional changes in oxidative phosphorylation (OXPHOS) genes. While not expressed in highly proliferative cancer cells, it is strongly induced upon cisplatin-induced senescence. Depletion of sin-lncRNA in ovarian cancer cells reduces oxygen consumption and increases extracellular acidification, sensitizing cells to cisplatin treatment. Altogether, these results indicate that sin-lncRNA is specifically induced in senescence to maintain metabolic homeostasis, unveiling an RNA-dependent metabolic rewiring specific to senescent cells.
Keywords
Metabolism; RNA-binding proteins; SenescenceBibliographic citation
Grossi E, Marchese FP, González J, Goñi E, Fernández-Justel JM, Amadoz A, et al. A lncRNA-mediated metabolic rewiring of cell senescence. Cell Rep. 2025 Jun 24;44(6):115747.
Audience
Professionals
This item appears in following collections
- HVH - Articles científics [4466]
- VHIO - Articles científics [1250]
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