Brea José, Rodrigo Jordi, Carrieri Antonio, Sanz Ferran, Cadavid M Isabel, Enguix María J, Villazón María, Mengod Guadalupe, Caro Yolanda, Masaguer Christian F, Raviña Enrique, Centeno Nuria B, Carotti Angelo, Loza M Isabel
Departamento de Farmacología, Facultad de Farmacia, Universidad de Santiago de Compostela, E-15782, Santiago de Compostela, Spain.
J Med Chem. 2002 Jan 3;45(1):54-71. doi: 10.1021/jm011014y.
A series of 52 conformationally constrained butyrophenones have been synthesized and pharmacologically tested as antagonists at 5-HT(2A), 5-HT(2B), and 5-HT(2C) serotonin receptors, useful for dissecting the role of each 5-HT(2) subtype in pathophysiology. These compounds were also a consistent set for the identification of structural features relevant to receptor recognition and subtype discrimination. Six compounds were found highly active (pK(i) > 8.76) and selective at the 5-HT(2A) receptor vs 5-HT(2B) and/or 5-HT(2C) receptors. Piperidine fragments confer high affinity at the 5-HT(2A) receptor subtype, with benzofuranone- and thiotetralonepiperidine as the most selective derivatives over 5-HT(2C) and 5-HT(2B) receptors, respectively; K(i) (2A/2C) and/or K(B) (2A/2B) ratios greater than 100 were obtained. Compounds showing a more pronounced selectivity at 5-HT(2A)/5-HT(2C) than at 5-HT(2A)/5-HT(2B) bear 6-fluorobenzisoxazolyl- and p-fluorobenzoylpiperidine moieties containing one methylene bridging the basic piperidine to the alkanone moiety. An ethylene bridge between the alkanone and the amino moieties led to ligands with higher affinities for the 5-HT(2B) receptor. Significant selectivity at the 5-HT(2B) receptor vs 5-HT(2C) was observed with 1-1[(1-oxo-1,2,3,4-tetrahydro-3-naphthyl)methyl]-4-[3-(p-fluorobenzoyl)propyl]piperazine (more than 100-fold higher). Although piperidine fragments also confer higher affinity at 5-HT(2C) receptors, only piperazine-containing ligands were selective over 5-HT(2A). Moderate selectivity was observed at 5-HT(2C) vs 5-HT(2B) (10-fold) with some compounds bearing a 4-[3-(6-fluorobenzisoxazolyl)]piperidine moiety in its structure. Molecular determinants for antagonists acting at 5-HT(2A) receptors were identified by 3D-QSAR (GRID-GOLPE) studies. Docking simulations at 5-HT(2A) and 5-HT(2C) receptors suggest a binding site for the studied type of antagonists (between transmembrane helices 2, 3, and 7) different to that of the natural agonist serotonin (between 3, 5, and 6).
已合成了一系列52种构象受限的丁酰苯类化合物,并作为5-HT(2A)、5-HT(2B)和5-HT(2C)血清素受体的拮抗剂进行了药理测试,有助于剖析每种5-HT(2)亚型在病理生理学中的作用。这些化合物也是用于鉴定与受体识别和亚型区分相关的结构特征的一组连贯化合物。发现六种化合物在5-HT(2A)受体上具有高活性(pK(i) > 8.76),并且相对于5-HT(2B)和/或5-HT(2C)受体具有选择性。哌啶片段赋予在5-HT(2A)受体亚型上的高亲和力,苯并呋喃酮-哌啶和硫代四氢萘酮哌啶分别是相对于5-HT(2C)和5-HT(2B)受体最具选择性的衍生物;获得了大于100的K(i) (2A/2C)和/或K(B) (2A/2B)比率。在5-HT(2A)/5-HT(2C)上比在5-HT(2A)/5-HT(2B)上表现出更明显选择性的化合物带有6-氟苯并异恶唑基-和对氟苯甲酰哌啶部分,其中一个亚甲基将碱性哌啶桥连到链烷酮部分。链烷酮和氨基部分之间的乙烯桥导致对5-HT(2B)受体具有更高亲和力的配体。用1-1[(1-氧代-1,2,3,4-四氢-3-萘基)甲基]-4-[3-(对氟苯甲酰基)丙基]哌嗪观察到在5-HT(2B)受体相对于5-HT(2C)有显著选择性(高出100倍以上)。尽管哌啶片段在5-HT(2C)受体上也赋予更高的亲和力,但只有含哌嗪的配体相对于5-HT(2A)具有选择性。对于一些在其结构中带有4-[3-(6-氟苯并异恶唑基)]哌啶部分的化合物,在5-HT(2C)相对于5-HT(2B)上观察到中等选择性(10倍)。通过3D-QSAR(GRID-GOLPE)研究确定了作用于5-HT(2A)受体的拮抗剂的分子决定因素。在5-HT(2A)和5-HT(2C)受体上的对接模拟表明,所研究类型的拮抗剂(在跨膜螺旋2、3和7之间)的结合位点与天然激动剂血清素(在3、5和6之间)的结合位点不同。