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MT1 选择性褪黑素受体配体:N-[(3-取代)苯胺基]烷基酰胺的合成、药理学评价和分子动力学研究。

MT1-selective melatonin receptor ligands: synthesis, pharmacological evaluation, and molecular dynamics investigation of N-{[(3-O-substituted)anilino]alkyl}amides.

机构信息

Dipartimento di Farmacia, Università degli Studi di Parma, V.le G. P. Usberti 27A, 43124 Parma (Italy).

出版信息

ChemMedChem. 2012 Nov;7(11):1954-64. doi: 10.1002/cmdc.201200303. Epub 2012 Aug 27.

DOI:10.1002/cmdc.201200303
PMID:22927210
Abstract

The design of compounds selective for the MT1 melatonin receptor is still a challenging task owing to the limited knowledge of the structural features conferring selectivity for the MT1 subtype, and only few selective compounds have been reported so far. N-(Anilinoalkyl)amides are a versatile class of melatonin receptor ligands that include nonselective MT1/MT2 agonists and MT2-selective antagonists. We synthesized a new series of N-(anilinoalkyl)amides bearing 3-arylalkyloxy or 3-alkyloxy substituents at the aniline ring, looking for new potent and MT1-selective ligands. To evaluate the effect of substituent size and shape on binding affinity and intrinsic activity, both flexible and conformationally constrained derivatives were prepared. The phenylbutyloxy substituent gave the best result, providing the partial agonist 4 a, which was endowed with high MT1 binding affinity (pKi=8.93) and 78-fold selectivity for the MT1 receptor. To investigate the molecular basis for agonist recognition, and to explain the role of the 3-arylalkyloxy substituent, we built a homology model of the MT1 receptor based on the β2 adrenergic receptor crystal structure in its activated state. A binding mode for MT1 agonists is proposed, as well as a hypothesis regarding the receptor structural features responsible for MT1 selectivity of compounds with lipophilic arylalkyloxy substituents.

摘要

化合物对 MT1 褪黑素受体的选择性设计仍然是一项具有挑战性的任务,这是由于对赋予 MT1 亚型选择性的结构特征的了解有限,迄今为止仅报道了少数选择性化合物。N-(苯胺基烷基)酰胺是一类多功能的褪黑素受体配体,包括非选择性 MT1/MT2 激动剂和 MT2 选择性拮抗剂。我们合成了一系列在苯胺环上带有 3-芳基烷氧基或 3-烷氧基取代基的新型 N-(苯胺基烷基)酰胺,寻找新的有效且对 MT1 选择性的配体。为了评估取代基大小和形状对结合亲和力和内在活性的影响,我们制备了柔性和构象受限的衍生物。苯丁氧基取代基给出了最佳结果,提供了部分激动剂 4a,其具有高 MT1 结合亲和力(pKi=8.93)和对 MT1 受体的 78 倍选择性。为了研究激动剂识别的分子基础,并解释 3-芳基烷氧基取代基的作用,我们基于β2 肾上腺素能受体在激活状态下的晶体结构构建了 MT1 受体的同源模型。提出了 MT1 激动剂的结合模式,以及关于对具有亲脂性芳基烷氧基取代基的化合物的 MT1 选择性负责的受体结构特征的假设。

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