Podocytes protect glomerular endothelial cells from hypoxic injury via deSUMOylation of HIF-1α signaling

足细胞 缺氧(环境) 细胞生物学 小发夹RNA 基因敲除 血管生成 缺氧诱导因子 串扰 生物 化学 细胞凋亡 癌症研究 内分泌学 生物化学 基因 有机化学 氧气 蛋白尿 光学 物理
作者
Lingyu Wang,Tuaner Zhang,Ming Fang,Nan Shen,Dapeng Wang,Jiaqi Teng,Bo Fu,Hua Xie,Quan Hong,Hongli Lin
出处
期刊:The International Journal of Biochemistry & Cell Biology [Elsevier BV]
卷期号:58: 17-27 被引量:26
标识
DOI:10.1016/j.biocel.2014.10.030
摘要

Hypoxia can cause severe tubulointerstitial injury and peritubular capillary loss. However, hypoxia-induced injury in glomerular capillaries is far milder than tubulointerstitium, but the reason for this difference is unclear. We hypothesized that the phenomenon is due to the protective crosstalk among intrinsic glomerular cells. To mimic the microenvironment and investigate the crosstalk process temporally, we established co-culture models of glomerular endothelial cells (GEnCs) with podocytes or with mesangial cells. We found that podocytes rather than mesangial cells prevented GEnCs from injury and hypoxia-induced apoptosis and promoted migration and angiogenesis of GEnCs under hypoxic conditions. We then identified that increased activation of the hypoxia inducible factor 1α (HIF-1α) pathway as the major mechanism enabling podocytes to protect GEnCs against hypoxia. HIF-1α stabilization during hypoxia is known to be dependent on SUMO-specific protease 1 (SENP1)-mediated deSUMOylate modifications. Therefore, we further targeted deSUMOylation, regulated by SENP1, by short hairpin RNA (shRNA) knockdown of SENP1 mRNA in vitro and measured expression of HIF-1α and its downstream gene VEGF in hypoxic podocytes. Our results showed that SENP1 was essential for HIF-1α deSUMOylation in podocytes. The blockade of deSUMOylation by SENP1 shRNA successfully abolished the activation of HIF-1α signaling and consequently suppressed the protective effects of podocytes on GEnCs. In conclusion, we demonstrate for the first time that hypoxia may promote HIF-1α stabilization and activation by increasing SENP1 expression in podocytes, which induce GEnCs survival and angiogenesis to resist hypoxia. Thus, deSUMOylation of HIF-1α signaling is a potentially novel therapeutic target for treating hypoxic renal disorders.

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