Deletion of the WD40 domain of ATG16L1 exacerbates acute pancreatitis, abolishes LAP-like non-canonical autophagy and slows trypsin degradation

Autophagy. 2025 Jan;21(1):210-222. doi: 10.1080/15548627.2024.2392478. Epub 2024 Aug 31.

Abstract

The WD40 domain (WDD) of ATG16L1 plays a pivotal role in non-canonical autophagy. This study examined the role of recently identified LAP-like non-canonical autophagy (LNCA) in acute pancreatitis. LNCA involves rapid single-membrane LC3 conjugation to endocytic vacuoles in pancreatic acinar cells. The rationale for this study was the previously observed presence of trypsin in the organelles undergoing LNCA; aberrant trypsin formation is an important factor in pancreatitis development. Here we report that the deletion of WDD (attained in ATG16L1[E230] mice) eliminated LNCA, aggravated caerulein-induced acute pancreatitis and suppressed the fast trypsin degradation observed in both a rapid caerulein-induced disease model and in caerulein-treated isolated pancreatic acinar cells. These experiments indicate that LNCA is a WDD-dependent mechanism and suggest that it plays not an activating but a protective role in acute pancreatitis. Furthermore, palmitoleic acid, another inducer of experimental acute pancreatitis, strongly inhibited LNCA, suggesting a novel mechanism of pancreatic lipotoxicity.Abbreviation: AMY: amylase; AP: acute pancreatitis; CASM: conjugation of Atg8 to single membranes; CCK: cholecystokinin; FAEE model: fatty acid and ethanol model; IL6: interleukin 6; LA: linoleic acid; LAP: LC3-associated phagocytosis; LMPO: lung myeloperoxidase; LNCA: LAP-like non-canonical autophagy; MAP1LC3/LC3: microtubule-associated protein 1 light chain 3; MPO: myeloperoxidase; PMPO: pancreatic myeloperoxidase; POA: palmitoleic acid; WDD: WD40 domain; WT: wild type.

Keywords: Amylase; LC3-associated phagocytosis; caerulein; cholecystokinin; endocytic vacuoles; palmitoleic acid.

MeSH terms

  • Acinar Cells* / metabolism
  • Acinar Cells* / pathology
  • Acute Disease
  • Animals
  • Autophagy* / genetics
  • Autophagy* / physiology
  • Autophagy-Related Proteins* / genetics
  • Autophagy-Related Proteins* / metabolism
  • Ceruletide* / toxicity
  • Fatty Acids, Monounsaturated / metabolism
  • Mice
  • Mice, Inbred C57BL
  • Pancreas / metabolism
  • Pancreas / pathology
  • Pancreatitis* / chemically induced
  • Pancreatitis* / metabolism
  • Pancreatitis* / pathology
  • Protein Domains
  • Proteolysis / drug effects
  • Trypsin* / metabolism

Substances

  • Atg16l1 protein, mouse
  • Autophagy-Related Proteins
  • Ceruletide
  • Trypsin
  • palmitoleic acid
  • Fatty Acids, Monounsaturated

Grants and funding

The work was supported by the Medical Research Council [MR/T002220/1].