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走出囊性纤维化领域:含五氟硫烷基(SF)的神经激肽-1受体配体的合成、受体亲和力及计算机模拟研究

Moving out of CF -Land: Synthesis, Receptor Affinity, and in silico Studies of NK1 Receptor Ligands Containing a Pentafluorosulfanyl (SF ) Group.

作者信息

Witoszka Katarzyna, Matalińska Joanna, Misicka Aleksandra, Lipiński Piotr F J

机构信息

Department of Neuropeptides, Mossakowski Medical Research Institute, Polish Academy of Sciences, Pawińskiego 5, 02-106, Warsaw, Poland.

Faculty of Chemistry, University of Warsaw, Pasteura 1, 02-093, Warsaw, Poland.

出版信息

ChemMedChem. 2023 Dec 1;18(23):e202300315. doi: 10.1002/cmdc.202300315. Epub 2023 Oct 27.

Abstract

The NK1 receptor (NK1R) is a molecular target for both approved and experimental drugs intended for a variety of conditions, including emesis, pain, and cancers. While contemplating modifications to the typical NK1R pharmacophore, we wondered whether the CF groups common for many NK1R ligands, could be replaced with some other moiety. Our attention was drawn by the SF group, and so we designed, synthesized, and tested ten novel SF -containing compounds for NK1R affinity. All analogues exhibit detectable NK1R binding, with the best of them, compound 5 a, (3-bromo-5-(pentafluoro-λ -sulfanyl)benzyl acetyl-L-tryptophanate) binding only slightly worse (IC =34.3 nM) than the approved NK1R-targeting drug, aprepitant (IC =27.7 nM). Molecular docking provided structural explanation of SAR. According to our analysis, the SF group in our compounds occupies a position similar to that of one of the CF groups of aprepitant as found in the crystal structure. Additionally, we checked whether the docking scoring function or energies derived from Fragment Molecular Orbital quantum chemical calculations may be helpful in explaining and predicting the experimental receptor affinities for our analogues. Both these methods produce moderately good results. Overall, this is the first demonstration of the utility of the SF group in the design of NK1R ligands.

摘要

NK1受体(NK1R)是多种已获批和实验性药物的分子靶点,这些药物用于治疗包括呕吐、疼痛和癌症在内的多种病症。在考虑对典型的NK1R药效基团进行修饰时,我们想知道许多NK1R配体常见的CF基团是否可以被其他部分取代。SF基团引起了我们的注意,因此我们设计、合成并测试了十种新型含SF化合物对NK1R的亲和力。所有类似物均表现出可检测到的NK1R结合,其中最佳的化合物5a(3-溴-5-(五氟-λ-硫烷基)苄基乙酰-L-色氨酸酯)的结合能力仅略低于已获批的靶向NK1R的药物阿瑞匹坦(IC =27.7 nM,IC =34.3 nM)。分子对接为构效关系提供了结构解释。根据我们的分析,我们化合物中的SF基团占据的位置与阿瑞匹坦晶体结构中CF基团之一的位置相似。此外,我们检查了对接评分函数或源自片段分子轨道量子化学计算的能量是否有助于解释和预测我们类似物的实验受体亲和力。这两种方法都产生了中等良好的结果。总体而言,这是首次证明SF基团在NK1R配体设计中的实用性。

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