Chemistry Research Laboratory, University of Oxford, Mansfield Road, Oxford, OX1 3TA, UK.
Present address: Department of Molecular and Cellular Physiology, University of Stanford, Stanford, CA, 94305-5345, USA.
Chembiochem. 2018 Nov 2;19(21):2262-2267. doi: 10.1002/cbic.201800246. Epub 2018 Sep 26.
In animals, the response to chronic hypoxia is mediated by upregulation of the α,β-heterodimeric hypoxia-inducible factors (HIFs). Levels of HIFα isoforms, but not HIFβ, are regulated by their post-translational modification as catalysed by prolyl hydroxylase domain enzymes (PHDs). Different roles for the human HIF-1/2α isoforms and their two oxygen-dependent degradation domains (ODDs) are proposed. We report kinetic and NMR analyses of the ODD selectivity of the catalytic domain of wild-type PHD2 (which is conserved in nearly all animals) and clinically observed variants. Studies using Ala scanning and "hybrid" ODD peptides imply that the relatively rigid conformation of the (hydroxylated) proline plays an important role in ODD binding. They also reveal differential roles in binding for the residues on the N- and C-terminal sides of the substrate proline. The overall results indicate how the PHDs achieve selectivity for HIFα ODDs and might be of use in identifying substrate-selective PHD inhibitors.
在动物中,对慢性缺氧的反应是由α、β-异二聚体缺氧诱导因子(HIFs)的上调介导的。HIFα同工型的水平,但不是 HIFβ,受其翻译后修饰调节,由脯氨酰羟化酶结构域酶(PHDs)催化。提出了人 HIF-1/2α同工型及其两个氧依赖性降解结构域(ODDs)的不同作用。我们报告了野生型 PHD2(几乎所有动物中都保守)和临床观察到的变体的催化结构域对 ODD 选择性的动力学和 NMR 分析。使用 Ala 扫描和“杂交”ODD 肽的研究表明,(羟基化)脯氨酸的相对刚性构象在 ODD 结合中起着重要作用。它们还揭示了在结合过程中底物脯氨酸的 N-和 C-末端侧残基的不同作用。总体结果表明 PHDs 如何实现对 HIFα ODD 的选择性,这可能有助于识别底物选择性 PHD 抑制剂。