Juliani Juliani, Tran Sharon, Harris Tiffany J, De Cruz Peter, Ellis Sarah L, Gleeson Paul A, Mariadason John M, Duszyc Kinga, Yap Alpha S, Lee Erinna F, Fairlie Walter D
Cell Death and Survival Laboratory, Olivia Newton-John Cancer Research Institute, Heidelberg, Australia.
School of Cancer Medicine, La Trobe University, Bundoora, Australia.
Autophagy Rep. 2025 Apr 3;4(1):2484494. doi: 10.1080/27694127.2025.2484494. eCollection 2025.
Disrupted intestinal homeostasis and barrier function contribute to the development of diseases such as inflammatory bowel disease. BECLIN-1, a core component of two class III phosphatidylinositol 3 kinase complexes, has a dual role in autophagy and endocytic trafficking. Emerging evidence suggests that its endocytic trafficking function is essential for intestinal integrity. To investigate the fatal gastrointestinal phenotype observed in BECLIN-1 knockout mice, we used organoids derived from these animals to show that BECLIN-1 deletion disrupts the localization of CADHERIN1/ECADHERIN to adherens junctions and OCCLUDIN to tight junctions. Impaired cargo trafficking to the lysosome was also observed. Filamentous actin cytoskeleton also became disorganized though there were no changes in its spatial interaction with CATENIN BETA1/BETA-CATENIN nor in BETA-CATENIN localization. The trafficking defects were all less pronounced or absent in organoids lacking an autophagy-only regulator, ATG7, emphasizing BECLIN-1's trafficking role in maintaining gut homeostasis and barrier function. These findings advance our understanding of epithelial dysfunction and the mechanisms underlying intestinal diseases.
肠道稳态和屏障功能的破坏会导致诸如炎症性肠病等疾病的发生。BECLIN-1是III类磷脂酰肌醇3激酶两个复合物的核心成分,在自噬和内吞运输中具有双重作用。新出现的证据表明,其在内吞运输中的功能对肠道完整性至关重要。为了研究在BECLIN-1基因敲除小鼠中观察到的致命胃肠道表型,我们使用了源自这些动物的类器官,以表明BECLIN-1的缺失会破坏钙黏蛋白1/E-钙黏蛋白在黏附连接处的定位以及闭合蛋白在紧密连接处的定位。还观察到货物向溶酶体的运输受损。丝状肌动蛋白细胞骨架也变得紊乱,尽管其与β-连环蛋白/β-联蛋白的空间相互作用以及β-联蛋白的定位没有变化。在缺乏仅具有自噬调节功能的自噬相关蛋白7(ATG7)的类器官中,运输缺陷均不太明显或不存在,这突出了BECLIN-1在维持肠道稳态和屏障功能中的运输作用。这些发现加深了我们对上皮功能障碍以及肠道疾病潜在机制的理解。