Departamento de Biología de Sistemas, Universidad de Alcalá, Alcalá de Henares, Madrid, Spain.
Neuronal and Tissue Regeneration Laboratory, Centro de Investigación Príncipe Felipe, Valencia, Spain.
Sci Rep. 2019 Nov 1;9(1):15868. doi: 10.1038/s41598-019-52310-6.
Renal hypoxia and loss of proximal tubular cells (PTC) are relevant in diabetic nephropathy. Hypoxia inhibits hypoxia-inducible factor-1α (HIF-1α) degradation, which leads to cellular adaptive responses through HIF-1-dependent activation of gene hypoxia-responsive elements (HRE). However, the diabetic microenvironment represses the HIF-1/HRE response in PTC. Here we studied the mechanism and consequences of impaired HIF-1α regulation in human proximal tubular HK-2 cells incubated in hyperglycemia. Inhibition at different levels of the canonical pathway of HIF-1α degradation did not activate the HIF-1/HRE response under hyperglycemia, except when proteasome was inhibited. Further studies suggested that hyperglycemia disrupts the interaction of HIF-1α with Hsp90, a known cause of proteasomal degradation of HIF-1α. Impaired HIF-1α regulation in cells exposed to hyperglycemic, hypoxic diabetic-like milieu led to diminished production of vascular endothelial growth factor-A and inhibition of cell migration (responses respectively involved in tubular protection and repair). These effects, as well as impaired HIF-1α regulation, were reproduced in normoglycemia in HK-2 cells incubated with microparticles released by HK-2 cells exposed to diabetic-like milieu. In summary, these results highlight the role of proteasome-dependent mechanisms of HIF-1α degradation on diabetes-induced HK-2 cells dysfunction and suggest that cell-derived microparticles may mediate negative effects of the diabetic milieu on PTC.
在糖尿病肾病中,肾脏缺氧和近端肾小管细胞 (PTC) 的丢失是相关的。缺氧抑制缺氧诱导因子-1α (HIF-1α) 的降解,通过 HIF-1 依赖性激活基因缺氧反应元件 (HRE) 导致细胞适应性反应。然而,糖尿病微环境抑制了 PTC 中的 HIF-1/HRE 反应。在这里,我们研究了在高血糖环境中孵育的人近端肾小管 HK-2 细胞中 HIF-1α 调节受损的机制和后果。在高血糖条件下,除了抑制蛋白酶体外,阻断 HIF-1α 降解的经典途径的不同水平都不能激活 HIF-1/HRE 反应。进一步的研究表明,高血糖破坏了 HIF-1α 与 Hsp90 的相互作用,Hsp90 是 HIF-1α 蛋白酶体降解的已知原因。在暴露于高血糖、低氧糖尿病样环境中的细胞中,HIF-1α 调节受损导致血管内皮生长因子-A 的产生减少和细胞迁移抑制(分别涉及管状保护和修复的反应)。在与暴露于糖尿病样环境的 HK-2 细胞释放的微粒体孵育的正常血糖条件下的 HK-2 细胞中,也观察到这些效应以及 HIF-1α 调节受损。总之,这些结果强调了蛋白酶体依赖性 HIF-1α 降解机制在糖尿病诱导的 HK-2 细胞功能障碍中的作用,并表明细胞衍生的微粒体可能介导糖尿病微环境对 PTC 的负面影响。