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April 15, 2026Autophagy0 citations

LC3-linked Golgi-bypass exocytosis fortifies epithelial barrier defense

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YWYì WángBGI Group (China)YWYì WángBGI Group (China)XXXinyu XiaoAntea Group (France)

Key Points

  • To explore how microbial signals mobilize unconventional Golgi-bypass exocytic routes to bolster epithelial defenses.
  • Defined LC3/Atg8-associated carrier exocytosis (LACES) in C. elegans intestinal cells
  • Examined ptdins3p generation in response to phenazine-1-carboxamide (PCN)
  • Investigated Atg8ylation of RAB-8 carriers
  • Evaluated PGP-1 transporter delivery and functional outcomes in mouse intestinal epithelium
  • LACES pathway enhances surface delivery of PGP-1 during infection
  • PCN increases apical delivery of ΔF508-CFTR in Caco-2 cysts
  • Enhanced LC3-RAB8 interactions in mouse intestinal epithelium observed

Abstract

Cells dynamically regulate membrane protein delivery to meet physiological demands, yet how external cues rapidly mobilize unconventional Golgi-bypass exocytic routes in vivo remains unclear. Here we define LC3/Atg8-associated carrier exocytosis (LACES), a conserved program that couples microbial cues to accelerated surface delivery. In the Caenorhabditis elegans intestine, phenazine-1-carboxamide (PCN) triggers VPS-34-dependent PtdIns3P generation at ILE-1/ERGIC-53 subdomains, enabling Atg8ylation on preexisting single-membrane RAB-8 carriers. This route accelerates delivery of the ABC transporter PGP-1 and improves host survival during infection, while operating independently of the unfolded protein response, canonical macroautophagy/autophagy initiation modules, and LC3-associated phagocytosis regulators. The pathway is engaged by multiple extracellular bacteria and also functions in mammalian epithelia, where PCN increases apical ΔF508-CFTR delivery in polarized Caco-2 cysts with measurable functional improvement and enhances LC3-RAB8 interactions in mouse intestinal epithelium. These findings establish a conserved LC3-linked Golgi-bypass route and illustrate how microbial cues can rapidly rewire epithelial membrane trafficking to fortify barrier defense.

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Cite This Study

Wáng et al. (2026) studied this question.

synapsesocial.com/papers/69df2b04e4eeef8a2a6aff3fhttps://doi.org/10.1080/15548627.2026.2659291
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