Institute of Physiology, University of Zurich, Zurich, Switzerland.
National Centre of Competence in Research "Kidney.CH", Zurich, Switzerland.
FASEB J. 2020 Feb;34(2):2344-2358. doi: 10.1096/fj.201902240R. Epub 2019 Dec 19.
Pharmacologic HIF hydroxylase inhibitors (HIs) are effective for the treatment of anemia in chronic kidney disease patients and may also be beneficial for the treatment of diseases such as chronic inflammation and ischemia-reperfusion injury. The selectivities of many HIs for HIF hydroxylases and possible off-target effects in cellulo are unclear, delaying the translation from preclinical studies to clinical trials. We developed a novel assay that discriminates between the inhibition of HIF-α prolyl-4-hydroxylase domain (PHD) enzymes and HIF-α asparagine hydroxylase factor inhibiting HIF (FIH). We characterized 15 clinical and preclinical HIs, categorizing them into pan-HIF-α hydroxylase (broad spectrum), PHD-selective, and FIH-selective inhibitors, and investigated their effects on HIF-dependent transcriptional regulation, erythropoietin production, and cellular energy metabolism. While energy homeostasis was generally maintained following HI treatment, the pan-HIs led to a stronger increase in pericellular pO than the PHD/FIH-selective HIs. Combined knockdown of FIH and PHD-selective inhibition did not further increase pericellular pO . Hence, the additional increase in pericellular pO by pan- over PHD-selective HIs likely reflects HIF hydroxylase independent off-target effects. Overall, these analyses demonstrate that HIs can lead to oxygen redistribution within the cellular microenvironment, which should be considered as a possible contributor to HI effects in the treatment of hypoxia-associated diseases.
药理 HIF 羟化酶抑制剂(HIs)可有效治疗慢性肾脏病患者的贫血,对慢性炎症和缺血再灌注损伤等疾病的治疗可能也有益处。许多 HIs 对 HIF 羟化酶的选择性和细胞内可能的非靶点效应尚不清楚,这阻碍了从临床前研究到临床试验的转化。我们开发了一种新的测定方法,可区分 HIF-α脯氨酰-4-羟化酶结构域(PHD)酶的抑制作用和 HIF-α天冬酰胺羟化酶因子抑制 HIF(FIH)的抑制作用。我们对 15 种临床前和临床 HIs 进行了特征描述,将它们分为泛 HIF-α羟化酶(广谱)、PHD 选择性和 FIH 选择性抑制剂,并研究了它们对 HIF 依赖性转录调节、促红细胞生成素产生和细胞能量代谢的影响。虽然 HI 治疗后通常能维持能量稳态,但泛 HIs 导致细胞外 pO 的增加比 PHD/FIH 选择性 HIs 更强。FIH 和 PHD 选择性抑制的联合敲低并没有进一步增加细胞外 pO。因此,泛 HIs 比 PHD 选择性 HIs 引起的细胞外 pO 增加可能反映了 HIF 羟化酶非依赖性的非靶点效应。总的来说,这些分析表明 HIs 可导致细胞微环境中氧的重新分布,这可能是 HI 在治疗与缺氧相关疾病中的作用的一个可能贡献因素。