Cusack B, Richelson E, Pang Y P, Zaidi J, Kozikowski A P
Neuropsychopharmacology Research, Mayo Foundation for Medical Education and Research, Jacksonville, Florida 32224.
Mol Pharmacol. 1993 Nov;44(5):1036-40.
We report the development of two novel neurotensin mimetics (mimics 1 and 2). These compounds were rationally designed and synthesized according to the multiple template approach. We present results of experiments designed to define their pharmacological profiles. In radioligand binding assays with murine neuroblastoma clone N1E-115, we determined the equilibrium dissociation constants for these compounds at the neurotensin receptor. The Kd values for mimic 1 and mimic 2 were 3.3 microM and 1.9 microM, respectively. Functionally, both mimetics antagonized the neurotensin-stimulated production of cGMP, with Kd values in the low micromolar range. Interestingly, mimic 2 displayed a dualistic pharmacological profile, which was concentration dependent. At doses in the 10-100 microM range, mimic 2 became a full agonist, stimulating cGMP production in N1E-115 cells with an EC50 value of 19 microM. Furthermore, mimic 1 did not antagonize the cGMP response elicited by mimic 2. When the neurotensin receptor was desensitized with a neurotensin receptor agonist, mimic 2 failed to stimulate significant cGMP production. We propose that mimic 2 binds to a higher affinity site when acting as an antagonist and binds to a lower affinity and different site when acting as an agonist. Thus, mimic 2 would appear to represent a unique pharmacological tool to characterize the neurotensin receptor and its diverse binding sites in N1E-115 cells.
我们报告了两种新型神经降压素模拟物(模拟物1和模拟物2)的研发情况。这些化合物是根据多模板方法合理设计并合成的。我们展示了旨在确定其药理学特性的实验结果。在对小鼠神经母细胞瘤克隆N1E - 115进行的放射性配体结合试验中,我们测定了这些化合物在神经降压素受体处的平衡解离常数。模拟物1和模拟物2的Kd值分别为3.3微摩尔和1.9微摩尔。在功能上,两种模拟物均拮抗神经降压素刺激的环磷酸鸟苷(cGMP)生成,其Kd值处于低微摩尔范围。有趣的是,模拟物2呈现出浓度依赖性的二元药理学特性。在10 - 100微摩尔范围内的剂量下,模拟物2成为完全激动剂,以19微摩尔的EC50值刺激N1E - 115细胞中的cGMP生成。此外模拟物1并不拮抗模拟物2引发的cGMP反应。当用神经降压素受体激动剂使神经降压素受体脱敏时,模拟物2无法刺激显著的cGMP生成。我们提出,模拟物2在作为拮抗剂时结合到一个高亲和力位点,而在作为激动剂时结合到一个低亲和力且不同的位点。因此,模拟物2似乎代表了一种独特的药理学工具,可用于表征N1E - 115细胞中的神经降压素受体及其不同的结合位点。