Shiosaki K, Lin C W, Kopecka H, Tufano M D, Bianchi B R, Miller T R, Witte D G, Nadzan A M
Neuroscience Research Division, Department 47H, Abbott Laboratories, Abbott Park, Illinois 60064.
J Med Chem. 1991 Sep;34(9):2837-42. doi: 10.1021/jm00113a023.
Novel Boc-CCK-4 derivatives were communicated recently as having high potency and selectivity for the CCK-A receptor (Shiosaki et al. J. Med. Chem. 1990, 33, 2950-2952). While Boc-CCK-4 binds selectively to the CCK-B receptor, replacement of the methionine with an N epsilon-substituted lysine dramatically reversed receptor selectivity, leading to the development of this novel series of tetrapeptides. A detailed structure-activity analysis of a series of urea-substituted tetrapeptides, represented by the general structure Boc-Trp-Lys(N epsilon-CO-NHR)-Asp-Phe-NH2, revealed that a number of substituted phenyl, naphthyl, and aliphatic urea residues in the lysine side chain yielded potent and selective CCK-A ligands. These tetrapeptides elicit full agonist responses in stimulating pancreatic amylase release that are effectively blocked by a selective CCK-A receptor antagonist. Conversion of the urea to a thiourea significantly reduced CCK-A binding potency as did replacement of the lysine with the homologous ornithine or homolysine. Tetrapeptides that were partial agonists (less than 80% efficacy) in phosphoinositide (PI) hydrolysis relative to CCK-8 did not exhibit high-dose inhibition of amylase secretion in guinea pig acini.
新型的Boc-CCK-4衍生物最近被报道对CCK-A受体具有高效力和选择性(Shiosaki等人,《药物化学杂志》,1990年,第33卷,2950 - 2952页)。虽然Boc-CCK-4选择性地与CCK-B受体结合,但用Nε-取代的赖氨酸取代甲硫氨酸会显著逆转受体选择性,从而导致了这一系列新型四肽的开发。对一系列以通式Boc-Trp-Lys(Nε-CO-NHR)-Asp-Phe-NH2表示的脲取代四肽进行详细的构效分析表明,赖氨酸侧链中许多取代的苯基、萘基和脂肪族脲残基产生了高效力和选择性的CCK-A配体。这些四肽在刺激胰腺淀粉酶释放方面引发完全激动剂反应,而这种反应可被选择性CCK-A受体拮抗剂有效阻断。将脲转化为硫脲会显著降低CCK-A结合效力,用同源的鸟氨酸或高赖氨酸取代赖氨酸也会如此。相对于CCK-8在磷酸肌醇(PI)水解中为部分激动剂(效力小于80%)的四肽,在豚鼠腺泡中未表现出对淀粉酶分泌的高剂量抑制作用。