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去除14-羟基对4,5-环氧吗啡喃衍生物与食欲素和阿片受体亲和力的影响。

Effect of removal of the 14-hydroxy group on the affinity of the 4,5-epoxymorphinan derivatives for orexin and opioid receptors.

作者信息

Katoh Koki, Yamamoto Naoshi, Ishikawa Yukiko, Irukayama-Tomobe Yoko, Tanimura Ryuji, Saitoh Tsuyoshi, Nagumo Yasuyuki, Kutsumura Noriki, Yanagisawa Masashi, Nagase Hiroshi

机构信息

Graduate School of Pure and Applied Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8571, Japan.

International Institute for Integrative Sleep Medicine (WPI-IIIS), University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8575, Japan.

出版信息

Bioorg Med Chem Lett. 2022 Mar 1;59:128527. doi: 10.1016/j.bmcl.2022.128527. Epub 2022 Jan 7.

Abstract

To investigate the contribution of hydrogen bonding between the 14-hydroxy group and the 6-amide chain on the binding affinity of nalfurafine toward KOR and OXR, we prepared the 14-H and 14-dehydrated nalfurafine and their five-membered D-ring nalfurafine (D-nor-nalfurafine) derivatives. The 14-H and 14-dehydrated nalfurafine derivatives showed almost the same affinity for KOR as nalfurafine and more potent affinity for OXR. On the other hand, 14-H and 14-dehydrated D-nor-nalfurafine derivatives showed weak affinity for KOR and almost no affinity for OXR. The conformational analyses suggested that the 6-amide chains of the nalfurafine derivatives are mainly oriented just at or downward from the C-ring, while those of the D-nor-nalfurafine derivatives were mainly oriented toward the upper side of the C-ring even in the absence of the 14-hydroxy group. We postulated that the ion-dipole interaction between the 6-amide and the 16-nitrogen might stabilize the upwardly oriented 6-amide group. These results suggested that the 14-hydroxy group and the ion-dipole interaction would play important roles in the orientation of the 6-amide group, which might control the affinity between KOR and OXR.

摘要

为了研究纳曲酮的14 - 羟基与6 - 酰胺链之间的氢键对其与κ阿片受体(KOR)和σ阿片受体(OXR)结合亲和力的贡献,我们制备了14 - H和14 - 脱水纳曲酮及其五元D环纳曲酮(D - 去甲 - 纳曲酮)衍生物。14 - H和14 - 脱水纳曲酮衍生物对KOR的亲和力与纳曲酮几乎相同,对OXR的亲和力更强。另一方面,14 - H和14 - 脱水D - 去甲 - 纳曲酮衍生物对KOR的亲和力较弱,对OXR几乎没有亲和力。构象分析表明,纳曲酮衍生物的6 - 酰胺链主要朝向C环或从C环向下排列,而即使在没有14 - 羟基的情况下,D - 去甲 - 纳曲酮衍生物的6 - 酰胺链主要朝向C环的上侧。我们推测6 - 酰胺与16 - 氮之间的离子 - 偶极相互作用可能稳定向上取向的6 - 酰胺基团。这些结果表明,14 - 羟基和离子 - 偶极相互作用在6 - 酰胺基团的取向上起重要作用,这可能控制KOR和OXR之间的亲和力。

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