Chvanov Michael, Voronina Svetlana, Jefferson Matthew, Mayer Ulrike, Sutton Robert, Criddle David N, Wileman Thomas, Tepikin Alexei V
Department of Molecular & Clinical Cancer Medicine, Institute of Systems Molecular & Integrative Biology, University of Liverpool, Liverpool, UK.
Biomedical Research Centre, School of Biological Sciences, University of East Anglia, Norwich, UK.
Autophagy. 2025 Jan;21(1):210-222. doi: 10.1080/15548627.2024.2392478. Epub 2024 Aug 31.
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. 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.
自噬相关基因16样蛋白1(ATG16L1)的WD40结构域(WDD)在非经典自噬中起关键作用。本研究探讨了最近发现的类LC3相关吞噬作用(LAP)的非经典自噬(LNCA)在急性胰腺炎中的作用。LNCA涉及胰腺腺泡细胞中自噬相关蛋白8(Atg8)与内吞液泡的快速单膜结合。本研究的理论依据是先前在经历LNCA的细胞器中观察到胰蛋白酶的存在;异常的胰蛋白酶形成是胰腺炎发展的一个重要因素。在此,我们报告WDD缺失(在ATG16L1[E230]小鼠中实现)消除了LNCA,加重了雨蛙肽诱导的急性胰腺炎,并抑制了在快速雨蛙肽诱导的疾病模型和雨蛙肽处理的分离胰腺腺泡细胞中观察到的快速胰蛋白酶降解。这些实验表明,LNCA是一种依赖WDD的机制,并表明它在急性胰腺炎中不发挥激活作用,而是发挥保护作用。此外,实验性急性胰腺炎的另一种诱导剂棕榈油酸强烈抑制LNCA,提示胰腺脂毒性的新机制。AMY:淀粉酶;AP:急性胰腺炎;CASM:Atg8与单膜的结合;CCK:胆囊收缩素;FAEE模型:脂肪酸和乙醇模型;IL6:白细胞介素6;LA:亚油酸;LAP:LC3相关吞噬作用;LMPO:肺髓过氧化物酶;LNCA:类LAP非经典自噬;MAP1LC3/LC3:微管相关蛋白1轻链3;MPO:髓过氧化物酶;PMPO:胰腺髓过氧化物酶;POA:棕榈油酸;WDD:WD40结构域;WT:野生型。