bioRxiv · 10.64898/2026.09.24.753666
OPA1 controls mitochondrial dysfunction-driven liver fibrosis in MASLD
Abstract
Progressive hepatic fibrosis is the principal determinant of morbidity and mortality in metabolic dysfunction-associated steatotic liver disease and steatohepatitis (MASLD/MASH). Mitochondrial dysfunction is a hallmark of MASH, and the release of mitochondrial damage-associated molecular patterns (mito-DAMPs) from injured hepatocytes can promote fibrosis. However, how mitochondrial dynamics and quality control shape the fibrotic response in MASLD/MASH remains unclear. Here, through large-scale genomic analyses of mitochondrial genes governing mitophagy, fusion and fission in human MASLD, with a power-equivalent sample size of approximately 700,000 individuals, we identify a strong association between hepatic fibrosis and the mitochondrial fusion factor dynamin-like GTPase optic atrophy 1 (OPA1). OPA1 transcripts and protein abundance in the liver epithelium were progressively dysregulated with advancing fibrosis. In mice, hepatocyte-specific OPA1 loss alone was sufficient to induce hepatic stellate cell activation and fibrosis in zone 3, promoted the release of mito-DAMPs into the circulation and exacerbated fibrosis in experimental MASH. These findings identify OPA1 as a central regulator of the hepatic fibrotic response and connect defective mitochondrial homeostasis to mito-DAMP release, hepatic stellate cell activation and fibrosis in MASLD.
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Yu, X., Huang, P., Justice, A., Hakim, A., Nanki, Y., Abilov, Z., O'Neill, E. B., Cruz Rodriguez, J., Cabrera, E., Sagatelian, M., Shankar, C. S., Flam, B. R., Al Khalloufi, K., Sesaki, H., Rong, S., Popov, Y. V.. 2026-09-27. OPA1 controls mitochondrial dysfunction-driven liver fibrosis in MASLD. https://doi.org/10.64898/2026.09.24.753666
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