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食品添加剂水杨酸酯抑制人源和鼠源胎盘 3β-羟甾脱氢酶:3D-QSAR 和计算机模拟分析。

Food additive salicylates inhibit human and rat placental 3β-hydroxysteroid dehydrogenase: 3D-QSAR and in silico analysis.

机构信息

Department of Pediatric Surgery, the Second Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University, Wenzhou, Zhejiang, China.

Department of Obstetrics and Gynecology, the Second Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University, Wenzhou, Zhejiang, 325027, China.

出版信息

Chem Biol Interact. 2024 Oct 1;402:111203. doi: 10.1016/j.cbi.2024.111203. Epub 2024 Aug 17.

Abstract

The use of salicylates as flavoring agents in food and beverages is common, but their potential to disrupt the endocrine system remains unclear. Human placental 3β-hydroxysteroid dehydrogenase 1 (h3β-HSD1) plays a role in progesterone synthesis and is the potential target. This study evaluated the inhibition of 13 salicylates on h3β-HSD1, structure-activity relationship (SAR) and compared with rat placental homolog r3β-HSD4. Salicylates inhibited h3β-HSD1, depending on carbon chain number in the alcohol moiety and the IC values for hexyl, ethylhexyl, homomenthyl, and menthyl salicylates were 53.27, 15.78, 2.35, and 2.31 μM, as mixed inhibitors, respectively, while methyl to benzyl salicylates were ineffective at 100 μM. Interestingly, only hexyl salicylate inhibited r3β-HSD4 with IC of 31.05 μM. Bivariate analysis revealed a negative correlation between IC and hydrophobicity (LogP), molecular weight, heavy atoms, and carbon number in the alcohol moiety against h3β-HSD1. Docking analysis demonstrated that these salicylates bind to cofactor binding sites or between the steroid and cofactor binding sites. Additionally, 3D-QSAR showed distinct binding via hydrogen bond donors and hydrophobic regions. In conclusion, the inhibition of h3β-HSD1 by salicylates appears to be dependent on factors such as LogP, molecular weight, heavy atoms, and carbon-chain length and there is species-dependent inhibition sensitivity.

摘要

水杨酸酯作为食品和饮料中的调味剂很常见,但它们对内分泌系统的潜在影响尚不清楚。人胎盘 3β-羟甾脱氢酶 1(h3β-HSD1)在孕酮合成中起作用,是潜在的靶标。本研究评估了 13 种水杨酸酯对 h3β-HSD1 的抑制作用、构效关系(SAR),并与大鼠胎盘同系物 r3β-HSD4 进行了比较。水杨酸酯抑制 h3β-HSD1,取决于醇部分的碳原子数,己基、乙基己基、高孟烯基和孟烯基水杨酸酯的 IC 值分别为 53.27、15.78、2.35 和 2.31 μM,为混合抑制剂,而甲基至苄基水杨酸酯在 100 μM 时无效。有趣的是,只有己基水杨酸酯抑制 r3β-HSD4,IC 为 31.05 μM。双变量分析表明,IC 与疏水性(LogP)、分子量、重原子和醇部分的碳原子数呈负相关,与 h3β-HSD1 相关。对接分析表明,这些水杨酸酯结合到辅因子结合位点或甾体和辅因子结合位点之间。此外,3D-QSAR 显示出通过氢键供体和疏水区的独特结合。总之,水杨酸酯对 h3β-HSD1 的抑制似乎取决于 LogP、分子量、重原子和碳链长度等因素,并且存在种属依赖性抑制敏感性。

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