National Clinical Research Center of Kidney Diseases, Jinling Hospital, Nanjing University School of Medicine, Nanjing, 210016, China; Southeast University School of Medicine, Nanjing, 210009, China.
National Clinical Research Center of Kidney Diseases, Jinling Hospital, Nanjing University School of Medicine, Nanjing, 210016, China.
Arch Biochem Biophys. 2019 Aug 15;671:210-217. doi: 10.1016/j.abb.2019.07.012. Epub 2019 Jul 19.
Podocytes are important to glomerular filtration barrier integrity and maintenance of size selectivity in protein filtration in the kidney. Although there is evidence to suggest that triptolide has direct protective effects on podocyte injuries, the mechanism mediating this process remains largely unexplored. In this study, we found triptolide suppresses podocyte p53 and GADD45B expression in vivo and in vitro. We used our previously developed in vivo zebrafish model of inducible podocyte-targeted injury and found that triptolide or the inhibition of p53 and gadd45ba with morpholino (MO) alleviated metronidazole (MTZ) induced edema in zebrafish, while the overexpression of gadd45ba in podocytes blocked the protective effect of triptolide and p53 MO on podocyte injury in zebrafish. Further study showed that p53 directly transactivated GADD45B. Triptolide inhibited p53 binding to the GADD45B promoter and subsequent GADD45B transcription. We further demonstrated that p53 may indirectly regulate GADD45B expression via NF-κB signaling. Taken together, our findings demonstrated that triptolide maintained glomerular barrier function via the inhibition of p53-NF-κB-GADD45B signaling, which provides a new understanding of the antiproteinuric effects of triptolide in glomerular diseases.
足细胞对于肾小球滤过屏障的完整性以及维持肾脏中蛋白质滤过的大小选择性非常重要。虽然有证据表明雷公藤甲素对足细胞损伤具有直接的保护作用,但介导这一过程的机制在很大程度上仍未被探索。在本研究中,我们发现雷公藤甲素在体内和体外抑制足细胞中 p53 和 GADD45B 的表达。我们使用了我们之前开发的诱导型足细胞靶向损伤的活体斑马鱼模型,发现雷公藤甲素或用 morpholino(MO)抑制 p53 和 gadd45ba 缓解了甲硝唑(MTZ)诱导的斑马鱼水肿,而在足细胞中过表达 gadd45ba 则阻断了雷公藤甲素和 p53 MO 对斑马鱼足细胞损伤的保护作用。进一步的研究表明,p53 可以直接激活 GADD45B。雷公藤甲素抑制 p53 与 GADD45B 启动子的结合以及随后的 GADD45B 转录。我们进一步证明,p53 可能通过 NF-κB 信号通路间接调节 GADD45B 的表达。总之,我们的研究结果表明,雷公藤甲素通过抑制 p53-NF-κB-GADD45B 信号通路维持肾小球屏障功能,为雷公藤甲素在肾小球疾病中的抗蛋白尿作用提供了新的认识。