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Red Cells: A novel erythrocytosis-associated PHD2 mutation suggests the location of a HIF binding groove

机译:红细胞:一种新的红细胞增多相关的PHD2突变提示HIF结合槽的位置

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摘要

The molecular basis of the erythrocytosis group of red cell disorders is incompletely defined. Some cases are due to dysregulation of erythropoietin (Epo) synthesis. The hypoxia inducible transcription factor (HIF) tightly regulates Epo synthesis. HIF in turn is regulated through its α subunit, which under normoxic conditions is hydroxylated on specific prolines and targeted for degradation by the von Hippel Lindau (VHL) protein. Several mutations in VHL have been reported in erythrocytosis, but only 1 mutation in the HIF prolyl hydroxylase PHD2 (prolyl hydroxylase domain protein 2) has been described. Here, we report a novel PHD2 mutation, Arg371His, which causes decreased HIF binding, HIF hydroxylase, and HIF inhibitory activities. In the tertiary structure of PHD2, Arg371 lies close to the previously described Pro317Arg mutation site. These findings substantiate PHD2 as a critical enzyme controlling HIF and therefore Epo in humans, and furthermore suggest the location of an active site groove in PHD2 that binds HIF.
机译:红细胞疾病的红细胞增多症组的分子基础尚未完全定义。有些情况是由于促红细胞生成素(Epo)合成失调所致。缺氧诱导转录因子(HIF)紧密调节Epo的合成。 HIF依次通过其α亚基进行调节,该α亚基在常氧条件下在特定脯氨酸上被羟基化,并被von Hippel Lindau(VHL)蛋白靶向降解。在红细胞增多症中已经报道了VHL中的几个突变,但是在HIF脯氨酰羟化酶PHD2(脯氨酰羟化酶域蛋白2)中仅描述了1个突变。在这里,我们报告了一个新颖的PHD2突变Arg371His,该突变导致HIF结合力,HIF羟化酶和HIF抑制活性降低。在PHD2的三级结构中,Arg371靠近先前描述的Pro317Arg突变位点。这些发现证实了PHD2是控制人类HIF并因此控制Epo的关键酶,并且进一步暗示了PHD2中与HIF结合的活性位点凹槽的位置。

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