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Potential Antiosteoporotic Natural Product Lead Compounds That Inhibit 17β-Hydroxysteroid Dehydrogenase Type 2

机译:潜在的抑制17β-羟基类固醇脱氢酶2型的抗骨质疏松天然产物先导化合物

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摘要

17β-Hydroxysteroid dehydrogenase type 2 (17β-HSD2) converts the active steroid hormones estradiol, testosterone, and 5α-dihydrotestosterone into their weakly active forms estrone, Δ4-androstene-3,17-dione, and 5α-androstane-3,17-dione, respectively, thereby regulating cell- and tissue-specific steroid action. As reduced levels of active steroids are associated with compromised bone health and onset of osteoporosis, 17β-HSD2 is considered a target for antiosteoporotic treatment. In this study, a pharmacophore model based on 17β-HSD2 inhibitors was applied to a virtual screening of various databases containing natural products in order to discover new lead structures from nature. In total, 36 hit molecules were selected for biological evaluation. Of these compounds, 12 inhibited 17β-HSD2 with nanomolar to low micromolar IC50 values. The most potent compounds, nordihydroguaiaretic acid (1), IC50 0.38 ± 0.04 μM, (−)-dihydroguaiaretic acid (4), IC50 0.94 ± 0.02 μM, isoliquiritigenin (6), IC50 0.36 ± 0.08 μM, and ethyl vanillate (12), IC50 1.28 ± 0.26 μM, showed 8-fold or higher selectivity over 17β-HSD1. As some of the identified compounds belong to the same structural class, structure–activity relationships were derived for these molecules. Thus, this study describes new 17β-HSD2 inhibitors from nature and provides insights into the binding pocket of 17β-HSD2, offering a promising starting point for further research in this area.
机译:17β-羟基类固醇脱氢酶2(17β-HSD2)将活性类固醇激素雌二醇,睾丸激素和5α-二氢睾丸酮转变成它们的弱活性形式雌酮,Δ4-雄甾烯3,17-二酮和5α-雄甾烷3,17-二酮,分别调节细胞和组织特异性类固醇的作用。由于活性类固醇水平的降低与骨骼健康和骨质疏松症的发作有关,因此17β-HSD2被认为是抗骨质疏松治疗的目标。在这项研究中,基于17β-HSD2抑制剂的药效团模型被用于虚拟筛选包含天然产物的各种数据库,以便从自然界中发现新的先导结构。总共选择了36个命中分子进行生物学评估。这些化合物中,有12种以纳摩尔至低微摩尔的IC50值抑制了17β-HSD2。最有效的化合物是去甲二氢愈创木酸(1),IC50 0.38±0.04μM,(-)-二氢愈创木酸(4),IC50 0.94±0.02μM,异异黄体生成素(6),IC50 0.36±0.08μM和香草酸乙酯(12) ,IC50 1.28±0.26μM,显示出比17β-HSD1高8倍或更高的选择性。由于某些已鉴定化合物属于相同的结构类别,因此推导了这些分子的构效关系。因此,本研究描述了来自自然界的新型17β-HSD2抑制剂,并提供了对17β-HSD2结合口袋的见识,为该领域的进一步研究提供了有希望的起点。

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