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Mitochondria adapt to cellular stress to ensure cell survival. The stress-regulated mitochondrial peptidase OMA1 orchestrates these adaptive responses, which limit mitochondrial fusion and promote mitochondrial stress signaling and metabolic rewiring. Here, we show that cellular stress adaptation in...
ORGANISM(S): Homo sapiens (Human) 
2026-01-06 | PXD061165 | Pride
Mitochondria dynamically adapt to cellular stress to ensure cell survival. The stress-regulated mitochondrial peptidase OMA1 orchestrates these adaptive responses, which limit mitochondrial fusion and promote mitochondrial stress signaling and metabolic rewiring. Here, we show that cellular stress a...
ORGANISM(S): Homo sapiens (Human) 
2026-01-20 | PXD072822 | Pride
Mitochondria dynamically adapt to cellular stress to ensure cell survival. The stress-regulated mitochondrial peptidase OMA1 orchestrates these adaptive responses, which limits mitochondrial fusion and promotes mitochondrial stress signaling and metabolic rewiring. Here, we show that cellular stress...
ORGANISM(S): Homo sapiens (Human) 
2025-12-16 | PXD070836 | Pride
Transcriptomics DNAJC15 and DNAJC19 knockdown in HeLa cells
To understand how OMA1 affects mitochondrial proteostasis and stress responses, we performed a proteomic survey of OMA1-deficient cells for proteolytic substrates. We demonstrate that OMA1 cleaves the mitochondrial chaperone DNAJC15 facilitating its degradation by the mitochondrial m-AAA protease. T...
ORGANISM(S): Homo sapiens (Human) 
2025-12-19 | PXD061131 | Pride
Mitochondria adapt to cellular stress to ensure cell survival. The stress-regulated mitochondrial peptidase OMA1 orchestrates these adaptive responses, which limit mitochondrial fusion and promote mitochondrial stress signaling and metabolic rewiring. Here, we show that cellular stress adaptation in...
ORGANISM(S): Homo sapiens (Human) 
2025-12-16 | PXD061185 | Pride
To better understand how OMA1 affects mitochondrial proteostasis and stress responses, we performed a proteomic survey of OMA1-deficient cells for proteolytic substrates. We demonstrate that OMA1 cleaves the mitochondrial chaperone DNAJC15 facilitating its degradation by the mitochondrial m-AAA prot...
ORGANISM(S): Homo sapiens 
2025-12-19 | GSE299431 | GEO
Releasing the mitochondrial respiration brake MCJ/DnaJC15 enhances CD8 CAR-T cell therapy efficacy
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