Bräuner-Osborne H, Ebert B, Brann M R, Falch E, Krogsgaard-Larsen P
Department of Medicinal Chemistry, Royal Danish School of Pharmacy, Copenhagen.
J Med Chem. 1995 Jun 9;38(12):2188-95. doi: 10.1021/jm00012a019.
A series of O-alkylated analogs of 5,6,7,8-tetrahydro-4H-isoxazolo[4,5-c]azepin-3-ol (THAO) were synthesized and characterized as ligands for muscarinic acetylcholine receptors (mAChRs). O-Methyl-THAO (4a), O-ethyl-THAO (4b), O-isopropyl-THAO (4c), and O-propargyl-THAO (4d) were shown to be potent inhibitors of the binding of tritiated quinuclidinyl benzilate (QNB), pirenzepine (PZ), and oxotremorine-M (Oxo-M) to tissue membrane preparations. In the [3H]-Oxo-M binding assay, receptor affinities in the low nanomolar range were measured for 4a (IC50 = 0.010 microM), 4b (IC50 = 0.003 microM), 4c (IC50 = 0.011 microM), and 4d (IC50 = 0.0008 microM). Pharmacological effects (EC50 or Ki values) and intrinsic activities (per cent of maximal carbachol responses) were determined using five recombinant human mAChRs (m1-m5) and the functional assay, receptor selection and amplification technology (R-SAT). Compound 4c antagonized carbachol-induced responses at m1, m3, and m5. With the exception of 4b, which was an antagonist at m5, 4a,b,d showed partial agonism at m1-m5 with very similar subtype selectivity (m2 > m4 > m1 > or = m3 > m5). Agonist index values for 4a-d, which were calculated from [3H]QNB (brain) and [3H]Oxo-M (brain) binding data, were shown to be predictive of pharmacologically determined intrinsic activities at m1-m5, the same rank order of intrinsic activity being observed at all five mAChRs (4a > 4d > 4b > 4c). It is concluded that within this class of high-affinity mAChR (m1-m5) ligands, containing secondary amino groups, minor changes of the bioisosteric ester alkyl groups have marked effects on potency and, in particular, intrinsic activity.
合成了一系列5,6,7,8-四氢-4H-异恶唑并[4,5-c]氮杂环庚-3-醇(THAO)的O-烷基化类似物,并将其表征为毒蕈碱型乙酰胆碱受体(mAChRs)的配体。结果表明,O-甲基-THAO(4a)、O-乙基-THAO(4b)、O-异丙基-THAO(4c)和O-炔丙基-THAO(4d)是氚化喹核醇基苯甲酸酯(QNB)、哌仑西平(PZ)和氧化震颤素-M(Oxo-M)与组织膜制剂结合的有效抑制剂。在[3H]-Oxo-M结合试验中,测得4a(IC50 = 0.010 microM)、4b(IC50 = 0.003 microM)、4c(IC50 = 0.011 microM)和4d(IC50 = 0.0008 microM)在低纳摩尔范围内的受体亲和力。使用五种重组人mAChRs(m1-m5)和功能测定法、受体选择和扩增技术(R-SAT)测定了药理作用(EC50或Ki值)和内在活性(卡巴胆碱最大反应的百分比)。化合物4c拮抗卡巴胆碱在m1、m3和m5上诱导的反应。除4b在m5上是拮抗剂外,4a、b、d在m1-m5上表现出部分激动作用,亚型选择性非常相似(m2 > m4 > m1 > 或 = m3 > m5)。根据[3H]QNB(脑)和[3H]Oxo-M(脑)结合数据计算的4a-d的激动剂指数值,被证明可预测在m1-m5上药理测定的内在活性,在所有五种mAChRs上观察到相同的内在活性等级顺序(4a > 4d > 4b > 4c)。得出的结论是,在这类含有仲氨基的高亲和力mAChR(m1-m5)配体中,生物电子等排体酯烷基的微小变化对效力,特别是内在活性有显著影响。