Palma C, Nardelli F, Manzini S
Department of Pharmacology, Menarini Ricerche, Pomezia, Rome, Italy.
Eur J Pharmacol. 1999 Jun 25;374(3):435-43. doi: 10.1016/s0014-2999(99)00334-9.
Binding characteristics and functional antagonism exerted by two structurally related tachykinin NK1 receptor antagonists, MEN 11467 ((1R,2S)-2N[1(H)indol-3-yl-carbonyl]-1-N-{Nalpha(p-tolylacetyl+ ++)-Nalpha(methyl)-D-3-(2-naphthyl)alanyl}diaminocyclohexane) and FK888 (N2-[(4R)-4-hydroxy-1-(1-methyl-1H-indol-3-yl)carbonyl-L-prolyl]-N-methy l-N-phenylmethyl-L-3-(2-naphthyl)alaninamide), were investigated in the human astrocytoma cell line U373 MG. In radioligand binding studies, conducted with [3H]substance P and intact cells at 37 degrees C, MEN 11467 bound to tachykinin NK1 receptors in an irreversible manner with a Ki value of 1.2+/-0.5 nM while FK888 bound in competitive manner with a Ki value of 4.6+/-2.2 nM. Receptor blockade by both antagonists resulted in a powerful and complete inhibition of functional responses induced by substance P, such as accumulation of the second messenger inositol monophosphate or interleukin-6 release. However, MEN 11467 showed a greater potency for blocking functional responses than FK888 despite their similar affinity for human tachykinin NK1 receptors. Moreover, MEN 11467 was more potent in inhibiting late rather than early phases of substance P-induced inositol monophosphate accumulation and its antagonism was enhanced by drug preincubation and barely affected by removal of unbound drug from the external medium, suggesting that MEN 11467 bound in a tight manner to the receptor. Such behaviour was not observed with the competitive and rapidly reversible antagonist FK888. These data indicate that the small differences in the chemical structure of MEN 11467 and FK888 determine the different binding characteristics at the tachykinin NK1 receptor and which are responsible for the greater potency of MEN 11467 for blocking functional responses. The Ki value obtained in binding studies may be inadequate to reveal the real potency of tachykinin NK1 receptor antagonists.
研究了两种结构相关的速激肽NK1受体拮抗剂MEN 11467((1R,2S)-2N-[1(H)-吲哚-3-基-羰基]-1-N-{Nα(p-甲苯基乙酰基)-Nα(甲基)-D-3-(2-萘基)丙氨酰}二氨基环己烷)和FK888(N2-[(4R)-4-羟基-1-(1-甲基-1H-吲哚-3-基)羰基-L-脯氨酰]-N-甲基-N-苯甲基-L-3-(2-萘基)丙氨酰胺)在人星形细胞瘤细胞系U373 MG中的结合特性和功能拮抗作用。在37℃下用[3H]P物质和完整细胞进行的放射性配体结合研究中,MEN 11467以不可逆方式与速激肽NK1受体结合,Ki值为1.2±0.5 nM,而FK888以竞争性方式结合,Ki值为4.6±2.2 nM。两种拮抗剂对受体的阻断均导致对P物质诱导的功能反应的强大且完全抑制,如第二信使肌醇单磷酸的积累或白细胞介素-6的释放。然而,尽管MEN 11467和FK888对人速激肽NK1受体的亲和力相似,但MEN 11467在阻断功能反应方面比FK888具有更高的效力。此外,MEN 11467在抑制P物质诱导的肌醇单磷酸积累的后期而非早期阶段更有效,其拮抗作用通过药物预孵育增强,且几乎不受从外部培养基中去除未结合药物的影响,这表明MEN 11467与受体紧密结合。竞争性且快速可逆的拮抗剂FK888未观察到这种行为。这些数据表明,MEN 11467和FK888化学结构的微小差异决定了它们在速激肽NK1受体上不同的结合特性,这也是MEN 11467在阻断功能反应方面具有更高效力的原因。在结合研究中获得的Ki值可能不足以揭示速激肽NK1受体拮抗剂的实际效力。