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新型 1,4-二氢吡啶衍生物作为盐皮质激素受体拮抗剂。

Novel 1,4-Dihydropyridine Derivatives as Mineralocorticoid Receptor Antagonists.

机构信息

Instituto de Química Médica (IQM-CSIC), Juan de la Cierva, 3, 28006 Madrid, Spain.

Departamento de Ciencias Médicas Básicas and Instituto de Tecnologías Biomédicas, Universidad de La Laguna, 38200 La Laguna, Spain.

出版信息

Int J Mol Sci. 2023 Jan 26;24(3):2439. doi: 10.3390/ijms24032439.

Abstract

The mineralocorticoid receptor (MR) belongs to the steroid receptor subfamily of nuclear receptors. MR is a transcription factor key in regulating blood pressure and mineral homeostasis. In addition, it plays an important role in a broad range of biological and pathological conditions, greatly expanding its interest as a pharmacological target. Non-steroidal MR antagonists (MRAs) are of particular interest to avoid side effects and achieve tissue-specific modulation of the receptor. The 1,4-dihydropyridine (1,4-DHP) ring has been identified as an appropriate scaffold to develop non-steroidal MRAs. We report the identification of a novel series of 1,4-DHP that has been guided by structure-based drug design, focusing on the less explored DHP position 2. Interestingly, substituents at this position might interfere with MR helix H12 disposition, which is essential for the recruitment of co-regulators. Several of the newly synthesized 1,4-DHPs show interesting properties as MRAs and have a good selectivity profile. These 1,4-DHPs promote MR nuclear translocation with less efficiency than the natural agonist aldosterone, which explains, at least in part, its antagonist character. Molecular dynamic studies are suggestive of several derivatives interfering with the disposition of H12 in the agonist-associated conformation, and thus, they might stabilize an MR conformation unable to recruit co-activators.

摘要

醛固酮受体 (MR) 属于核受体甾体受体亚家族。MR 是一种转录因子,在调节血压和矿物质稳态方面起着关键作用。此外,它在广泛的生物学和病理学条件下发挥着重要作用,这极大地扩展了其作为药理学靶点的兴趣。非甾体类 MR 拮抗剂 (MRAs) 特别受到关注,以避免副作用并实现受体的组织特异性调节。1,4-二氢吡啶 (1,4-DHP) 环已被确定为开发非甾体类 MRAs 的合适支架。我们报告了一系列新的 1,4-DHP 的鉴定,这些化合物是基于结构的药物设计指导的,重点是研究较少的 DHP 位置 2。有趣的是,该位置的取代基可能会干扰 MR 螺旋 H12 的排布,这对于招募共调节剂是必不可少的。新合成的几种 1,4-DHPs 作为 MRAs 具有有趣的性质,并且具有良好的选择性。这些 1,4-DHPs 促进 MR 核易位的效率低于天然激动剂醛固酮,这至少部分解释了其拮抗剂特性。分子动力学研究表明,一些衍生物可能会干扰 H12 在激动剂相关构象中的排布,因此,它们可能会稳定一种无法招募共激活剂的 MR 构象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c32/9917360/a8aaef9222f3/ijms-24-02439-g001.jpg

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