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FUBL-3/FUBP1 mediates mitochondrial stress–induced chromatin remodeling and longevity

Source: PubMed Central Open Access, NCBI / U.S. National Library of Medicine

Science AdvancesLast synced 6/26/2026Status: syncedPMID: 42341138 pmidDOI: 10.1126/sciadv.aec8143

Mitochondrial stress activates nuclear transcriptional programs to restore homeostasis and promote longevity; yet, the nuclear effector that directly reshapes chromatin during stress remains unclear. Through a forward genetic screen in, we identify FUBL-3, the homolog of human far-upstream elements binding protein 1 (FUBP1), as a conserved regulator that couples mitochondrial stress to chromatin remodeling. FUBL-3 translocates to intestinal nuclei upon stress, where it drives nucleosome remodeling and deacetylase–dependent chromatin condensation and activates mitochondrial unfolded protein response (UPR). Loss ofdisrupts chromatin compaction and abolishes stress-induced lifespan extension, while its overexpression is sufficient to restructure chromatin, trigger UPR, and extend lifespan. Notably, human FUBP1 rescuesmutants in worms and mediates chromatin remodeling in mammalian cells under mitochondrial stress. FUBP1 binds promoters of proteostasis and mitochondrial quality control genes, supporting its role in nuclear adaptation. Our study identifies FUBL-3/FUBP1 as a conserved mitochondrial-to-nuclear communicator that reprograms chromatin architecture to promote stress resilience and healthy aging. A conserved mitochondrial-nuclear effector, FUBL-3/FUBP1, remodels chromatin to promote stress resilience and longevity. teaser

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