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基于结构的缺氧诱导因子-α抑制因子的β-羟基噻唑衍生物抑制剂的优化

Structure-guided optimisation of -hydroxythiazole-derived inhibitors of factor inhibiting hypoxia-inducible factor-α.

作者信息

Corner Thomas P, Teo Ryan Z R, Wu Yue, Salah Eidarus, Nakashima Yu, Fiorini Giorgia, Tumber Anthony, Brasnett Amelia, Holt-Martyn James P, Figg William D, Zhang Xiaojin, Brewitz Lennart, Schofield Christopher J

机构信息

Chemistry Research Laboratory, Department of Chemistry and the Ineos Oxford Institute for Antimicrobial Research, University of Oxford 12 Mansfield Road OX1 3TA Oxford United Kingdom

State Key Laboratory of Natural Medicines, Jiangsu Key Laboratory of Drug Design and Optimization and Department of Chemistry, China Pharmaceutical University Nanjing 211198 China

出版信息

Chem Sci. 2023 Oct 27;14(43):12098-12120. doi: 10.1039/d3sc04253g. eCollection 2023 Nov 8.

Abstract

The human 2-oxoglutarate (2OG)- and Fe(ii)-dependent oxygenases factor inhibiting hypoxia-inducible factor-α (FIH) and HIF-α prolyl residue hydroxylases 1-3 (PHD1-3) regulate the response to hypoxia in humans catalysing hydroxylation of the α-subunits of the hypoxia-inducible factors (HIFs). Small-molecule PHD inhibitors are used for anaemia treatment; by contrast, few selective inhibitors of FIH have been reported, despite their potential to regulate the hypoxic response, either alone or in combination with PHD inhibition. We report molecular, biophysical, and cellular evidence that the -hydroxythiazole scaffold, reported to inhibit PHD2, is a useful broad spectrum 2OG oxygenase inhibitor scaffold, the inhibition potential of which can be tuned to achieve selective FIH inhibition. Structure-guided optimisation resulted in the discovery of -hydroxythiazole derivatives that manifest substantially improved selectivity for FIH inhibition over PHD2 and other 2OG oxygenases, including Jumonji-C domain-containing protein 5 (∼25-fold), aspartate/asparagine-β-hydroxylase (>100-fold) and histone -lysine demethylase 4A (>300-fold). The optimised -hydroxythiazole-based FIH inhibitors modulate the expression of FIH-dependent HIF target genes and, consistent with reports that FIH regulates cellular metabolism, suppressed lipid accumulation in adipocytes. Crystallographic studies reveal that the -hydroxythiazole derivatives compete with both 2OG and the substrate for binding to the FIH active site. Derivatisation of the -hydroxythiazole scaffold has the potential to afford selective inhibitors for 2OG oxygenases other than FIH.

摘要

人类2-氧代戊二酸(2OG)和Fe(II)依赖性加氧酶抑制缺氧诱导因子-α(FIH)以及缺氧诱导因子-α脯氨酰残基羟化酶1-3(PHD1-3)通过催化缺氧诱导因子(HIFs)α亚基的羟基化来调节人体对缺氧的反应。小分子PHD抑制剂用于治疗贫血;相比之下,尽管FIH选择性抑制剂单独或与PHD抑制联合使用时具有调节缺氧反应的潜力,但报道的此类抑制剂却很少。我们报告了分子、生物物理和细胞方面的证据,即据报道可抑制PHD2的β-羟基噻唑支架是一种有用的广谱2OG加氧酶抑制剂支架,其抑制潜力可进行调整以实现对FIH的选择性抑制。通过结构导向优化,发现了β-羟基噻唑衍生物,其对FIH抑制的选择性相较于PHD2和其他2OG加氧酶(包括含Jumonji-C结构域蛋白5(约25倍)、天冬氨酸/天冬酰胺-β-羟化酶(>100倍)和组蛋白H3-赖氨酸去甲基化酶4A(>300倍))有显著提高。优化后的基于β-羟基噻唑的FIH抑制剂可调节FIH依赖性HIF靶基因的表达,并且与FIH调节细胞代谢的报道一致,该抑制剂可抑制脂肪细胞中的脂质积累。晶体学研究表明,β-羟基噻唑衍生物与2OG和底物竞争结合FIH活性位点。β-羟基噻唑支架的衍生化有可能为FIH以外的2OG加氧酶提供选择性抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78be/10631261/092b0ff1f916/d3sc04253g-f1.jpg

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