The transcriptional coactivator CBP/p300 is an evolutionarily conserved node that promotes longevity in response to mitochondrial stress.

Li, Terytty Yang; Sleiman, Maroun Bou; Li, Hao; Gao, Arwen W; Mottis, Adrienne; Bachmann, Alexis Maximilien; El Alam, Gaby; Li, Xiaoxu et al. · Nat Aging · 2021

basic_science · Level V

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Abstract

Organisms respond to mitochondrial stress by activating multiple defense pathways including the mitochondrial unfolded protein response (UPR<sup>mt</sup>). However, how UPR<sup>mt</sup> regulators are orchestrated to transcriptionally activate stress responses remains largely unknown. Here we identified CBP-1, the worm ortholog of the mammalian acetyltransferases CBP/p300, as an essential regulator of the UPR<sup>mt</sup>, as well as mitochondrial stress-induced immune response, reduction of amyloid-β aggregation and lifespan extension in <i>Caenorhabditis elegans</i>. Mechanistically, CBP-1 acts downstream of histone demethylases, JMJD-1.2/JMJD-3.1, and upstream of UPR<sup>mt</sup> transcription factors including ATFS-1, to systematically induce a broad spectrum of UPR<sup>mt</sup> genes and execute multiple beneficial functions. In mouse and human populations, transcript levels of <i>CBP/p300</i> positively correlate with UPR<sup>mt</sup> transcripts and longevity. Furthermore, CBP/p300 inhibition disrupts, while forced expression of p300 is sufficient to activate, the UPR<sup>mt</sup> in mammalian cells. These results highlight an evolutionarily conserved mechanism that determines mitochondrial stress response, and promotes health and longevity through CBP/p300.

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