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用羟基吡啶酮CP94进行铁螯合诱导大鼠肾脏中的缺氧诱导因子(HIF-1α)

Induction of hypoxia inducible factor (HIF-1α) in rat kidneys by iron chelation with the hydroxypyridinone, CP94.

作者信息

Baek Jin Hyen, Reiter Chad E N, Manalo Dominador J, Buehler Paul W, Hider Robert C, Alayash Abdu I

机构信息

Laboratory of Biochemistry and Vascular Biology, Division of Hematology, Center for Biologics Evaluation and Research, Food and Drug Administration, Bethesda, MD 20892, USA.

出版信息

Biochim Biophys Acta. 2011 Apr-Jun;1809(4-6):262-8. doi: 10.1016/j.bbagrm.2011.04.010. Epub 2011 May 1.

Abstract

Hypoxia inducible factor (HIF-1α) is a master regulator of tissue adaptive responses to hypoxia whose stability is controlled by an iron containing prolyl hydroxylase domain (PHD) protein. A catalytic redox cycle in the PHD's iron center that results in the formation of a ferryl (Fe(+4)) intermediate has been reported to be responsible for the hydroxylation and subsequent degradation of HIF-1α under normoxia. We show that induction of HIF-1α in rat kidneys can be achieved by iron reduction by the hydroxypyridin-4 one (CP94), an iron chelator administered intraperitoneally in rats. The extent of HIF protein stabilization as well as the expression of HIF target genes, including erythropoietin (EPO), in kidney tissues was comparable to those induced by known inhibitors of the PHD enzyme, such as desferrioxamine (DFO) and cobalt chloride (CoCl(2)). In human kidney cells and in vitro PHD activity assay, we were able to show that the HIF-1α protein can be stabilized by addition of CP94. This appears to inactivate PHD; and thus prevents the hydroxylation of HIF-1α. In conclusion, we have identified the inhibition of iron-binding pocket of PHD as an underlying mechanism of HIF induction in vivo and in vitro by a bidentate hydroxypyridinone.

摘要

缺氧诱导因子(HIF-1α)是组织对缺氧适应性反应的主要调节因子,其稳定性受含铁血脯氨酰羟化酶结构域(PHD)蛋白控制。据报道,PHD铁中心的催化氧化还原循环导致形成高铁(Fe(+4))中间体,该中间体负责在常氧条件下对HIF-1α进行羟基化并随后降解。我们发现,通过给大鼠腹腔注射铁螯合剂羟基吡啶-4-酮(CP94)来降低铁含量,可诱导大鼠肾脏中的HIF-1α。肾脏组织中HIF蛋白稳定的程度以及包括促红细胞生成素(EPO)在内的HIF靶基因的表达,与已知的PHD酶抑制剂(如去铁胺(DFO)和氯化钴(CoCl₂))诱导的情况相当。在人肾细胞和体外PHD活性测定中,我们能够证明添加CP94可使HIF-1α蛋白稳定。这似乎使PHD失活,从而防止HIF-1α的羟基化。总之,我们已经确定抑制PHD的铁结合口袋是双齿羟基吡啶酮在体内和体外诱导HIF的潜在机制。

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