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首页> 外文期刊>The Biochemical Journal >Investigating the dependence of the hypoxia-inducible factor hydroxylases (factor inhibiting HIF and prolyl hydroxylase domain 2) on ascorbate and other reducing agents.
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Investigating the dependence of the hypoxia-inducible factor hydroxylases (factor inhibiting HIF and prolyl hydroxylase domain 2) on ascorbate and other reducing agents.

机译:研究缺氧诱导因子羟化酶(抑制HIF和脯氨酰羟化酶结构域2的因子)对抗坏血酸和其他还原剂的依赖性。

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The HIF (hypoxia-inducible factor) hydroxylases [PHDs or EGLNs (prolyl hydroxylases), which in humans are PHD isoforms 1-3, and FIH (factor inhibiting HIF)] regulate HIF levels and activity. These enzymes are Fe(II)/2-oxoglutarate-dependent oxygenases, many of which are stimulated by ascorbate. We have investigated the ascorbate dependence of PHD2-catalysed hydroxylation of two prolyl hydroxylation sites in human HIF-1alpha, and of FIH-catalysed hydroxylation of asparaginyl hydroxylation sites in HIF-1alpha and in a consensus ankyrin repeat domain peptide. The initial rate and extent of hydroxylation was increased in the presence of ascorbate for each of these reactions. When ascorbate was replaced with structural analogues, the results revealed that the ascorbate side chain was not important in its contribution to HIF hydroxylase catalysis, whereas modifications to the ene-diol portion of the molecule negated the ability to promote hydroxylation. We investigated whether alternative reducing agents (glutathione and dithiothreitol) could be used to promote HIF hydroxylase activity, and found partial stimulation of hydroxylation in an apparently enzyme- and substrate-specific manner. The results raise the possibility of developing reducing agents targeted to specific HIF hydroxylase-catalysed reactions.
机译:HIF(缺氧诱导因子)羟化酶[PHDs或EGLNs(脯氨酰羟化酶),在人类中是PHD异构体1-3,而FIH(抑制HIF的因子)]调节HIF的水平和活性。这些酶是Fe(II)/ 2-氧戊二酸酯依赖性加氧酶,其中许多被抗坏血酸刺激。我们已经研究了人类HIF-1alpha中两个脯氨酰羟基化位点的PHD2催化羟基化的抗坏血酸依赖性,以及HIF-1alpha和共有锚蛋白重复结构域肽中FIH催化的天冬酰胺基羟基化位点的羟基化。对于这些反应中的每一个,在抗坏血酸存在下,羟基化的初始速率和程度增加。当用结构类似物代替抗坏血酸时,结果表明抗坏血酸侧链在其对HIF羟化酶催化的贡献中并不重要,而对分子中烯二醇部分的修饰则否定了促进羟化的能力。我们调查了是否可以使用其他还原剂(谷胱甘肽和二硫苏糖醇)来促进HIF羟化酶的活性,并发现以明显的酶和底物特异性方式部分刺激羟化反应。结果提高了开发针对特定HIF羟化酶催化反应的还原剂的可能性。

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