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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Identification of Cys255 in HIF-1α as a novel site for development of covalent inhibitors of HIF-1α/ARNT PasB domain protein-protein interaction
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Identification of Cys255 in HIF-1α as a novel site for development of covalent inhibitors of HIF-1α/ARNT PasB domain protein-protein interaction

机译:HIF-1α中Cys255的鉴定是开发HIF-1α/ ARNT PasB域蛋白-蛋白相互作用的共价抑制剂的新位点

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摘要

The heterodimer HIF-1α (hypoxia inducible factor)/HIF-β (also known as ARNT-aryl hydrocarbon nuclear translocator) is a key mediator of cellular response to hypoxia. The interaction between these monomer units can be modified by the action of small molecules in the binding interface between their C-terminal heterodimerization (PasB) domains. Taking advantage of the presence of several cysteine residues located in the allosteric cavity of HIF-1α PasB domain, we applied a cysteine-based reactomics "hotspot identification" strategy to locate regions of HIF- 1α PasB domain critical for its interaction with ARNT. COMPOUND 5 was identified using a mass spectrometry-based primary screening strategy and was shown to react specifically with Cys255 of the HIF-1α PasB domain. Biophysical characterization of the interaction between PasB domains of HIF-1α and ARNT revealed that covalent binding of COMPOUND 5 to Cys255 reduced binding affinity between HIF-1α and ARNT PasB domains approximately 10-fold. Detailed NMR structural analysis of HIF-1α-PasB-COMPOUND 5 conjugate showed significant local conformation changes in the HIF-1α associated with key residues involved in the HIF-1α/ARNT PasB domain interaction as revealed by the crystal structure of the HIF-1α/ARNT PasB heterodimer. Our screening strategy could be applied to other targets to identify pockets surrounding reactive cysteines suitable for development of small molecule modulators of protein function. Published by Wiley-Blackwell.
机译:异二聚体HIF-1α(缺氧诱导因子)/HIF-β(也称为ARNT-芳烃核转运体)是细胞对缺氧反应的关键介体。这些单体单元之间的相互作用可以通过小分子在其C端异二聚化(PasB)域之间的结合界面中的作用进行修饰。利用位于HIF-1αPasB域的变构腔中的几个半胱氨酸残基的存在,我们应用了基于半胱氨​​酸的反应组学“热点识别”策略来定位HIF-1αPasB域与ARNT相互作用至关重要的区域。使用基于质谱的初步筛选策略鉴定了化合物5,化合物5与HIF-1αPasB结构域的Cys255特异性反应。 HIF-1α的PasB结构域与ARNT之间相互作用的生物物理特征表明,化合物5与Cys255的共价结合降低了HIF-1α与ARNT的PasB结构域之间的结合亲和力,约为10倍。 HIF-1α-PasB-COMPOUND5共轭物的详细NMR结构分析显示,HIF-1α的重要构象变化与HIF-1α/ ARNT PasB结构域相互作用中涉及的关键残基相关,如HIF-1α的晶体结构所揭示/ ARNT PasB异二聚体。我们的筛选策略可以应用于其他目标,以识别适合开发蛋白质功能小分子调节剂的反应性半胱氨酸周围的口袋。由Wiley-Blackwell发布。

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