Institute of Nephrology, Zhong Da Hospital, Southeast University School of Medicine, Nanjing, China.
Division of Nephrology, The Fifth People's Hospital of Shanghai, Fudan University, Shanghai, China.
Diabetes. 2021 Nov;70(11):2639-2651. doi: 10.2337/db21-0205. Epub 2021 Aug 10.
Foot process effacement is an important feature of early diabetic nephropathy (DN), which is closely related to the development of albuminuria. Under certain nephrotic conditions, the integrity and function of the glomerular slit diaphragm (SD) structure were impaired and replaced by the tight junction (TJ) structure, resulting in so-called SD-TJ transition, which could partially explain the effacement of foot processes at the molecular level. However, the mechanism underlying the SD-TJ transition has not been described in DN. Here, we demonstrated that impaired autophagic flux blocked p62-mediated degradation of ZO-1 (TJ protein) and promoted podocytes injury via activation of caspase3 and caspase8. Interestingly, the expression of VDR in podocytes was decreased under diabetes conditions, which impaired autophagic flux through downregulating Atg3. Of note, we also found that VDR abundance was negatively associated with impaired autophagic flux and SD-TJ transition in the glomeruli from human renal biopsy samples with DN. Furthermore, VDR activation improved autophagic flux and attenuated SD-TJ transition in the glomeruli of diabetic animal models. In conclusion, our data provided the novel insight that VDR/Atg3 axis deficiency resulted in SD-TJ transition and foot processes effacement via blocking the p62-mediated autophagy pathway in DN.
足细胞裂孔隔膜(SD)-紧密连接(TJ)转位是导致早期糖尿病肾病(DN)蛋白尿发生的重要机制,但其在 DN 中的具体作用机制尚未阐明。本研究发现,糖尿病状态下,VDR 表达下调,导致自噬流受损,通过 p62 介导的 TJ 蛋白(ZO-1)降解减少,激活 caspase3 和 caspase8,促进足细胞损伤。重要的是,我们还发现,在伴有 DN 的人类肾活检样本中,肾小球内 VDR 丰度与自噬流受损及 SD-TJ 转位呈负相关。此外,VDR 激动剂可改善糖尿病动物模型中肾小球的自噬流,减轻 SD-TJ 转位。综上所述,该研究提示 VDR/Atg3 轴缺陷通过阻断 p62 介导的自噬通路导致 SD-TJ 转位和足突融合,为糖尿病肾病的治疗提供了新的靶点。