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February 21, 2026Biophysical Journal0 citations

BPS2026 – In situ cryo-ET visualization of mitochondrial depolarization and mitophagic engulfment

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KRKevin RoseEHEric HerrmannJLJavier Lizarrondo

Key Points

  • To investigate the structural impacts of mitochondrial depolarization on mitophagy in U2OS cells.
  • U2OS cells treated with oligomycin and antimycin A
  • Used cryogenic electron tomography and focused ion beam milling
  • Visualized phagophores and ATP synthase relocalization
  • Mitochondria were fragmented without matrix calcium phosphate granules
  • Phagophores with lipid transporter densities linked to mitophagy were observed
  • Prohibitin complex found in open and closed states, enriched by oligomycin treatment

Abstract

Defective mitochondrial quality control in response to loss of mitochondrial membrane polarization is implicated in Parkinson’s disease by mutations in PINK1 and PRKN. Parkin-expressing U2 osteosarcoma (U2OS) cells were treated with the depolarizing agents oligomycin and antimycin A (OA) and subjected to cryo-focused ion beam milling and in situ cryo-electron tomography. Mitochondria were fragmented and devoid of matrix calcium phosphate granules. Phagophores were visualized, with bridge-like lipid transporter densities connected to mitophagic phagophores. A subpopulation of ATP synthases relocalized from cristae to the inner boundary membrane. The structure of the dome-shaped prohibitin complex, a dodecamer of PHB1-PHB2 dimers, was determined in situ by subtomogram averaging in untreated and treated cells and found to exist in open and closed conformations, with the closed conformation being enriched by OA treatment. These findings provide a set of native snapshots of the manifold nano-structural consequences of mitochondrial depolarization and provide a baseline for future in situ dissection of Parkin-dependent mitophagy.

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Cite This Study

Rose et al. (2026) studied this question.

synapsesocial.com/papers/69990df65b97ab4c14ac2c94https://doi.org/10.1016/j.bpj.2025.11.1736
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