Department of General Surgery, Second Affiliated Hospital of Dalian Medical University, Dalian, 116023, China.
Department of General Surgery, Huizhou Municipal Central People's Hospital, Huizhou, 516000, China.
Apoptosis. 2018 Dec;23(11-12):667-678. doi: 10.1007/s10495-018-1484-5.
Epithelial apoptosis is an important factor in intestinal ischemia-reperfusion (I/R) injury. Heat shock factor 1 (HSF1) is a classical stress response factor that directly regulates the transcription of heat shock proteins (HSPs) under stress conditions. Although HSPs are involved in protecting the intestine against I/R, the mechanism whereby HSF1 is regulated in I/R is poorly understood. Here, we show that the ubiquitin ligase FBXW7 targets HSF1 for ubiquitination and degradation in intestinal I/R. In this study, we found that FBXW7 expression was upregulated at the transcriptional level in intestinal mucosae subjected to I/R. In Caco-2 and IEC-6 cells subjected to hypoxia/reoxygenation (H/R), a high FBXW7 level led to excessive HSF1 ubiquitination and degradation. FBXW7 knockdown attenuated HSF1 ubiquitination and downregulation and accelerated HSPB1 and HSP70 expression. In addition, FBXW7 deletion alleviated the apoptosis of intestinal epithelial cells, as evidenced by decreased activation of caspase-3 and caspase-9. The results suggest that FBXW7 suppression protects against intestinal I/R, at least partly through the HSF1/HSP pathway. These findings indicate that FBXW7 may be a potential therapeutic target for inhibiting intestinal mucosa apoptosis during intestinal I/R.
上皮细胞凋亡是肠道缺血再灌注(I/R)损伤的一个重要因素。热休克因子 1(HSF1)是一种经典的应激反应因子,它在应激条件下直接调节热休克蛋白(HSPs)的转录。虽然 HSPs 参与保护肠道免受 I/R 损伤,但 HSF1 在 I/R 中如何被调节的机制尚不清楚。在这里,我们表明泛素连接酶 FBXW7 靶向 HSF1 进行泛素化和降解,导致肠道 I/R。在本研究中,我们发现 FBXW7 的表达在肠道黏膜 I/R 时在转录水平上上调。在缺氧/复氧(H/R)处理的 Caco-2 和 IEC-6 细胞中,高水平的 FBXW7 导致 HSF1 的过度泛素化和降解。FBXW7 敲低减弱了 HSF1 的泛素化和下调,并加速了 HSPB1 和 HSP70 的表达。此外,FBXW7 的缺失减轻了肠上皮细胞的凋亡,这表现为 caspase-3 和 caspase-9 的激活减少。这些结果表明,FBXW7 的抑制作用可以防止肠道 I/R,至少部分是通过 HSF1/HSP 途径。这些发现表明,FBXW7 可能是抑制肠道 I/R 期间肠道黏膜细胞凋亡的一个潜在治疗靶点。