An Erythrocytosis-Associated Mutation in the Zinc Finger of PHD2 Provides Insights into Its Binding of p23.

Hypoxia (Auckland, N.Z.) Pub Date : 2019-12-13 eCollection Date: 2019-01-01 DOI:10.2147/HP.S230502
Daisheng Song, Wei Guan, Lea M Coon, Aref Al-Kali, Jennifer L Oliveira, Frank S Lee
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引用次数: 1

Abstract

Background: Loss of function mutations in the EGLN1 gene are a cause of erythrocytosis. EGLN1 encodes for prolyl hydroxylase domain protein 2 (PHD2). PHD2 hydroxylates and downregulates hypoxia-inducible factor-2α (HIF-2α), a transcription factor that regulates erythropoiesis. While the large majority of erythrocytosis-associated EGLN1 mutations occur within its catalytic domain, rare mutations reside in its zinc finger. This zinc finger binds a Pro-Xaa-Leu-Glu motif in p23, an HSP90 cochaperone that facilitates hydroxylation of HIF-α, an HSP90 client. Essentially nothing is known about the specific interactions between the PHD2 zinc finger and p23.

Results: Here, we characterize an erythrocytosis-associated mutation in the zinc finger, K55N, that abolishes interaction with p23. We provide evidence that the affected residue, Lys-55, interacts with Asp-152 of p23. We also present results that indicate that PHD2 Arg-32 interacts with p23 Glu-160.

Conclusion: These studies not only reinforce the importance of the PHD2 zinc finger in the control of erythropoiesis, but also lead to a model in which a peptide motif in p23 binds in a specific orientation to a predicted groove in the zinc finger of PHD2.

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PHD2锌指中与红细胞增多症相关的突变提供了其与p23结合的见解。
背景:EGLN1基因功能突变缺失是红细胞增多症的一个原因。EGLN1编码脯氨酸羟化酶结构域蛋白2 (PHD2)。PHD2羟基化并下调缺氧诱导因子-2α (HIF-2α),这是一种调节红细胞生成的转录因子。虽然绝大多数与红细胞增生相关的EGLN1突变发生在其催化结构域内,但罕见的突变存在于其锌指。锌指结合p23中的Pro-Xaa-Leu-Glu基序,p23是HSP90的合作伙伴,促进HIF-α的羟基化,HSP90的客户端。基本上,我们对PHD2锌指和p23之间的具体相互作用一无所知。结果:在这里,我们描述了锌指中与红细胞增生相关的突变K55N,该突变消除了与p23的相互作用。我们提供证据表明,受影响的残基Lys-55与p23的Asp-152相互作用。我们还发现PHD2 Arg-32与p23 Glu-160相互作用。结论:这些研究不仅强化了PHD2锌指在控制红细胞生成中的重要性,而且还建立了一个p23肽基序以特定方向结合到PHD2锌指中预测的凹槽的模型。
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