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March 29, 2026Cell Death and Disease0 citationsOpen Access

ZNRF1 deficiency disrupts Fas ligand trafficking and immune balance

TLTing-Yu LaiYCYung-Chi ChangYLYou-Sheng Lin

Key Points

  • This research aims to explore how ZNRF1 regulates fas ligand trafficking in macrophages and its impact on immune balance.
  • Identified ZNRF1 as a crucial factor for FasL trafficking in macrophages.
  • Examined age-dependent effects of Znrf1 deletion on splenomegaly and T-cell ratios.
  • Performed confocal imaging to assess lysosome-related organelle behavior.
  • Conducted biochemical analyses of Munc18-2 and Syntaxin-3 interactions.
  • Used knockdown and reconstitution strategies to evaluate the role of ZNRF1 E3 ligase activity.
  • Znrf1 deletion led to increased CD4+/CD8+ T-cell ratios and splenomegaly in aged subjects.
  • ZNRF1 deficiency resulted in defective surface expression of FasL despite increased total levels.
  • Confocal imaging revealed no co-accumulation of FasL with lysosome-related organelles at the membrane surface.
  • Impaired FasL-dependent killing of activated CD4+ T cells was observed in Znrf1-deficient macrophages.

Abstract

Abstract Fas ligand (FasL)-mediated apoptosis constrains immune responses by eliminating activated lymphocytes, yet how FasL is delivered to the plasma membrane in myeloid cells remains unclear. We identify the RING E3 ligase ZNRF1 as a macrophage-intrinsic checkpoint that licenses terminal trafficking and surface exposure of FasL. Myeloid-specific Znrf1 deletion caused age-dependent spontaneous splenomegaly and, upon allosensitization, elevated CD4 + /CD8 + T-cell ratios, enlarged germinal centers with heightened IL-21/Tfh activity, and augmented alloantibody production. In macrophages, ZNRF1 deficiency disrupted the link between total and surface FasL. Although cellular FasL levels increased upon stimulation, there was no corresponding elevation in surface FasL, indicating a defect in terminal trafficking or docking. Confocal imaging showed preserved peripheral polarization of LAMP1⁺ lysosome-related organelles while FasL cargo did not co-accumulate at the cortex, indicating a late docking/fusion defect. Biochemically, ZNRF1 deficiency weakened the Munc18-2 ( Stxbp2 )–Syntaxin-3 (S tx3 ) interaction; Stxbp2 knockdown reduced surface FasL, and reconstitution with wild-type ZNRF1—but not the catalytically inactive C184A mutant—restored surface FasL despite similar complex assembly, establishing a requirement for ZNRF1 E3 activity. Functionally, Znrf1 -deficient macrophages displayed impaired FasL-dependent killing of activated CD4⁺ T cells and Fas-sensitive targets, not rescued by stronger LPS priming. These findings define a ZNRF1–Munc18-2–Stx3 axis that couples lysosome-related organelle polarization to fusion, ensuring timely FasL availability at the macrophage surface and suggesting a tractable node to modulate immune hyperactivation.

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Cite This Study

Lai et al. (2026) studied this question.

synapsesocial.com/papers/69c8c28cde0f0f753b39ceefhttps://doi.org/10.1038/s41419-026-08566-8
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