Qian J M, Coy D H, Jiang N Y, Gardner J D, Jensen R T
Digestive Disease Branch National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, Maryland 20892.
J Biol Chem. 1989 Oct 5;264(28):16667-71.
Each of the last 6 peptide bonds in the COOH terminus of [Leu11]substance P [( Leu11]SP) and [Nle11]spantide were replaced with [CH2NH], and each analogue was tested for SP agonist or antagonist activity by determining its ability to interact with SP receptors on dispersed acini from guinea pig pancreas. Each of the 6 spantide and 5 of the 6 SP analogues had no agonist activity, whereas [psi 9-10]SP was an agonist. For the spantide pseudopeptides, the psi 10-11 analogue (Ki,2.8 microM) was equipotent as an antagonist to spantide itself, whereas the psi 9-10, psi 8-9, psi 7-8, and psi 6-7 analogues were 2.5, 7, 5, and 3 times less potent. For the SP pseudopeptides, the psi 10-11 analogue was the most potent antagonist (Ki, 6.2 microM), whereas the psi 8-9, psi 7-8, and psi 6-7 analogues were 7-, 36-, and 39-fold less potent. There was a close correlation between the ability of each pseudopeptide to inhibit binding of 125I-Bolton-Hunter-SP and to affect amylase secretion. [psi 10-11]SP inhibited SP-stimulated amylase release in a competitive manner, and its inhibitory ability was specific for the SP receptor. Despite [psi 10-11]SP, spantide, and [psi 10-11]spantide having similar affinities for the SP receptor (Ki, 2-6 microM), for inhibition of binding of 125I-[Tyr4]bombesin, the analogues differed with [psi 10-11]SP having a 50-fold lower affinity than for the SP receptor, whereas [psi 10-11]spantide had a 4-fold lower affinity and spantide a 1.5-fold lower affinity for the SP receptor. These results demonstrate that SP pseudopeptides represent a new class of SP receptor antagonists and, in contrast to the currently described SP receptor antagonists, are more specific for SP receptors.
将[Leu11]P物质([Leu11]SP)和[Nle11]spantide的COOH末端的最后6个肽键中的每一个用[CH2NH]取代,并通过测定其与豚鼠胰腺分散腺泡上的SP受体相互作用的能力,对每种类似物进行SP激动剂或拮抗剂活性测试。6种spantide类似物中的每一种以及6种SP类似物中的5种均无激动剂活性,而[psi 9-10]SP是一种激动剂。对于spantide假肽,psi 10-11类似物(Ki,2.8 microM)作为拮抗剂与spantide本身效力相当,而psi 9-10、psi 8-9、psi 7-8和psi 6-7类似物的效力分别低2.5、7、5和3倍。对于SP假肽,psi 10-11类似物是最有效的拮抗剂(Ki,6.2 microM),而psi 8-9、psi 7-8和psi 6-7类似物的效力分别低7、36和39倍。每种假肽抑制125I-博尔顿-亨特-SP结合的能力与其影响淀粉酶分泌的能力之间存在密切相关性。[psi 10-11]SP以竞争性方式抑制SP刺激的淀粉酶释放,其抑制能力对SP受体具有特异性。尽管[psi 10-11]SP、spantide和[psi 10-11]spantide对SP受体具有相似的亲和力(Ki,2-6 microM),但对于抑制125I-[Tyr4]蛙皮素的结合,这些类似物有所不同,[psi 10-11]SP对SP受体的亲和力比对[psi 10-11]spantide低50倍,对spantide低1.5倍。这些结果表明,SP假肽代表了一类新型的SP受体拮抗剂,与目前描述的SP受体拮抗剂相比,对SP受体更具特异性。