a Department of Biochemistry , Keio University School of Medicine , Tokyo , Japan.
b Division of Gastroenterology and Hepatology, Department of Internal Medicine , Keio University School of Medicine , Tokyo , Japan.
Autophagy. 2019 Feb;15(2):242-258. doi: 10.1080/15548627.2018.1515530. Epub 2018 Sep 10.
-derived CagA, a type IV secretion system effector, plays a role as an oncogenic driver in gastric epithelial cells. However, upon delivery into gastric epithelial cells, CagA is usually degraded by macroautophagy/autophagy. Hence, the induction of autophagy in -infected epithelial cells is an important host-protective ability against gastric carcinogenesis. However, the mechanisms by which autophagosome-lysosome fusion is regulated, are unknown. Here, we report that enhancement of LAMP1 (lysosomal associated membrane protein 1) expression is necessary for autolysosome formation. LAMP1 expression is induced by nuclear translocated LRP1 (LDL receptor related protein 1) intracellular domain (LRP1-ICD) binding to the proximal promoter region. Nuclear translocation of LRP1-ICD is enhanced by infection. In contrast, CAPZA1 (capping actin protein of muscle Z-line alpha subunit 1) inhibits LAMP1 expression via binding to LRP1-ICD in the nuclei. The binding of CAPZA1 to LRP1-ICD prevents LRP1-ICD binding to the proximal promoter. Thus, in CAPZA1-overexpressing gastric epithelial cells infected with , autolysosome formation is inhibited and CagA escapes autophagic degradation. These findings identify CAPZA1 as a novel negative regulator of autolysosome formation and suggest that deregulation of CAPZA1 expression leads to increased risk of gastric carcinogenesis. : CagA: cytotoxin-associated gene A; CAPZA1: capping actin protein of muscle Z-line alpha subunit 1; ChIP: chromatin immunoprecipitation; GTF2I: general transcription factor IIi; HDAC: histone deacetylase; LAMP1: lysosomal associated membrane protein 1; LRP1: LDL receptor related protein 1; LRP1-ICD: CagA intracellular domain; qPCR: quantitative polymerase chain reaction; VacA: vacuolating cytotoxin.
-衍生的 CagA 是一种 IV 型分泌系统效应物,在胃上皮细胞中作为致癌驱动因子发挥作用。然而,在递送到胃上皮细胞后,CagA 通常会被巨自噬/自噬降解。因此,感染细胞中自噬的诱导是防止胃发生癌变的重要宿主保护能力。然而,自噬体溶酶体融合的调节机制尚不清楚。在这里,我们报告 LAMP1(溶酶体相关膜蛋白 1)表达的增强对于自噬溶酶体的形成是必要的。LAMP1 的表达是由核转位的 LRP1(低密度脂蛋白受体相关蛋白 1)细胞内结构域(LRP1-ICD)与近端启动子区域结合而诱导的。感染增强了 LRP1-ICD 的核转位。相反,CAPZA1(肌肉 Z 线 alpha 亚单位 1 的肌动蛋白加帽蛋白)通过与核内的 LRP1-ICD 结合来抑制 LAMP1 的表达。CAPZA1 与 LRP1-ICD 的结合阻止了 LRP1-ICD 与 近端启动子的结合。因此,在 CAPZA1 过表达的感染 的胃上皮细胞中,自噬溶酶体的形成受到抑制,CagA 逃避自噬降解。这些发现确定 CAPZA1 是自噬溶酶体形成的新型负调节剂,并表明 CAPZA1 表达的失调导致胃发生癌变的风险增加。