Department of Medicinal Chemistry, School of Pharmacy, Kitasato University, Minato-ku, Tokyo, Japan.
Bioorg Med Chem Lett. 2012 Aug 1;22(15):5071-4. doi: 10.1016/j.bmcl.2012.05.122. Epub 2012 Jun 7.
To clarify the essential structures of an opioid κ receptor selective agonist, nalfurafine, for binding to the κ receptor, we designed and synthesized some nalfurafine derivatives and the decahydro(iminoethano)phenanthrene derivatives with a cyclohexene moiety as a surrogate for the phenol ring. In addition to the 6-amide side chain and the 17-nitrogen substituted by a cyclopropylmethyl group, the 4,5-epoxy ring, phenolic hydroxy group, and angular hydroxy group played important roles in eliciting the binding properties of nalfurafine but these three moieties were not indispensable for binding to the κ receptor. Moreover, the phenol ring was also not essential for the binding to the κ receptor, and the cyclohexene moiety would play an important role in fixing the conformation of decahydro(iminoethano)phenanthrene derivatives to effectively raise the amide side chain, rendering a conformation that resembled the active one of nalfurafine.
为阐明阿片κ受体选择性激动剂纳呋拉啡与κ受体结合的基本结构,我们设计并合成了一些纳呋拉啡衍生物和十氢(亚氨基乙氧基)菲衍生物,其中环己烯部分替代了酚环。除了 6-酰胺侧链和被环丙甲基取代的 17-氮外,4,5-环氧环、酚羟基和角羟基在引发纳呋拉啡结合特性方面发挥了重要作用,但这三个部分对于与 κ 受体结合并非必不可少。此外,酚环对于与 κ 受体结合也不是必需的,环己烯部分在固定十氢(亚氨基乙氧基)菲衍生物的构象方面发挥重要作用,有效地提升酰胺侧链,使构象类似于纳呋拉啡的活性构象。