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Nature Cell Biology· 2026Q1

DFCP1-containing ER microdomains mediate lysosomal membrane repair

Maja Radulovic, Sascha Pust, Athanasios Kournoutis, Di Chen et al.

Short summary

DFCP1 accumulates on ER domains near damaged lysosomes, concentrating the lipid channel VPS13C to promote repair by binding and hydrolyzing ATP.

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Key points

  • DFCP1 accumulates on PI3P-containing ER domains proximal to damaged lysosomes.
  • DFCP1's accumulation is triggered by Ca2+ efflux and requires PIK3C3, ULK1, and VAP proteins.
  • DFCP1 promotes focal accumulation of the lipid channel VPS13C on ER domains.
  • DFCP1's ATP binding and hydrolysis are crucial for its function in lysosomal repair.
  • Absence of DFCP1 reduces cellular resistance to vacuolar damage caused by Listeria monocytogenes.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Lysosomal membrane integrity is essential for preserving cellular homeostasis in response to different stressors. Upon lysosomal membrane permeabilization, cells activate several mechanisms for lysosomal membrane repair, including ESCRT proteins, phosphatidylinositol 4-phosphate (PI4P)-dependent lipid transfer from the endoplasmic reticulum (ER) and conjugation of ATG8 family proteins to single membranes (CASM). The interplay between these pathways and the regulation of the lipid transfer machinery remain incompletely understood. Here we show that phosphatidylinositol 3-phosphate (PI3P)-containing ER domains play a major role in lysosomal membrane repair. PI3P is formed on lysosome-proximal ER domains by the phosphatidylinositol 3-kinase PIK3C3/VPS34 in response to membrane damage, and inhibition or depletion of PIK3C3 inhibits lysosome repair. Mechanistically, the ATPase DFCP1/ZFYVE1 accumulates on lysosome-proximal ER domains by its PI3P binding, triggered by Ca 2+ efflux from lysosomes and requiring the ULK1 kinase complex and ER proteins of the VAP family. Downstream of CASM, PI4P, ESCRTs and PI3P, DFCP1 promotes focal accumulation of the lipid channel VPS13C on ER domains proximal to damaged lysosomes to promote their repair. The function and dynamics of DFCP1 depend on its ability to bind and hydrolyse ATP, and absence of DFCP1 compromises cellular resistance to vacuolar damage induced by Listeria monocytogenes . We conclude that DFCP1 mediates concentration of the ER-associated lipid transport machinery at damaged lysosomes to promote their sealing in response to Ca 2+ flux and PIK3C3 activation.

The authors' abstract, as published at the source. Nature Cell Biology, 2026 · DOI ↗

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Field: Cell Biology

Cell BiologyBiochemistry, Genetics and Molecular Biology