Endo Y, Takehana S, Ohno M, Driedger P E, Stabel S, Mizutani M Y, Tomioka N, Itai A, Shudo K
Graduate School of Pharmaceutical Sciences, University of Tokyo, 7-3-1, Hongo, Bunkyo-ku, Tokyo 113, Japan.
J Med Chem. 1998 Apr 23;41(9):1476-96. doi: 10.1021/jm970704s.
Phorbol esters (12-O-tetradecanoylphorbol 13-acetate; TPA) and teleocidins are known to be potent tumor promoters and to activate protein kinase C (PKC) by binding competitively to the enzyme. The relationship between the chemical structures and the activities of these compounds has attracted much attention because of the marked structural dissimilarities. The benzolactam 5, with an eight-membered lactam ring and benzene ring instead of the nine-membered lactam ring and indole ring of teleocidins, reproduces the active ring conformation and biological activities of teleocidins. Herein we describe the synthesis of benzolactams with hydrophobic substituents at various positions. Structure-activity data indicate that the existence of a hydrophobic region between C-2 and C-9 and the steric factor at C-8 play critical roles in the appearance of biological activities. We also computationally simulated the docking of teleocidin and the modified benzolactam molecules to the Cys2 domain structure observed in the crystalline complex of PKCdelta with phorbol 13-acetate. Teleocidin and benzolactams fitted well into the same cavity as phorbol 13-acetate. Of the three functional groups hydrogen-bonding to the protein, two hydrogen-bonded with protein atoms in common with phorbol 13-acetate, but the third one hydrogen-bonded with a different protein atom from that in the case of phorbol 13-acetate. The model explains well the remarkable difference in activity between 5 and its analogue having a bulky substituent at C-8.
佛波酯(12-O-十四酰佛波醇-13-乙酸酯;TPA)和远侧杀菌素是已知的强效肿瘤促进剂,它们通过与蛋白激酶C(PKC)竞争性结合来激活该酶。由于这些化合物的化学结构存在明显差异,它们的化学结构与活性之间的关系备受关注。苯并内酰胺5具有八元内酰胺环和苯环,而非远侧杀菌素的九元内酰胺环和吲哚环,它再现了远侧杀菌素的活性环构象和生物活性。在此,我们描述了在不同位置带有疏水取代基的苯并内酰胺的合成。构效关系数据表明,C-2和C-9之间疏水区域的存在以及C-8处的空间因素在生物活性的表现中起关键作用。我们还通过计算模拟了远侧杀菌素和修饰的苯并内酰胺分子与在PKCδ与佛波醇13-乙酸酯的晶体复合物中观察到的Cys2结构域的对接情况。远侧杀菌素和苯并内酰胺与佛波醇13-乙酸酯很好地契合在同一空腔中。在与蛋白质形成氢键的三个官能团中,有两个与佛波醇13-乙酸酯与蛋白质原子形成的氢键相同,但第三个与佛波醇13-乙酸酯情况不同的蛋白质原子形成氢键。该模型很好地解释了5与其在C-8处具有庞大取代基的类似物之间活性的显著差异。