Stereochemical basis for a unified structure activity theory of aromatic and heterocyclic rings in selected opioids and opioid peptides.

Joel S Goldberg
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Abstract

This paper presents a novel unified theory of the structure activity relationship of opioids and opioid peptides. It is hypothesized that a virtual or known heterocyclic ring exists in all opioids which have activity in humans, and this ring occupies relative to the aromatic ring of the drug, approximately the same plane in space as the piperidine ring of morphine. Since the rings of morphine are rigid, and the aromatic and piperidine rings are critical structural components for morphine's analgesic properties, the rigid morphine molecule allows for approximations of the aromatic and heterocyclic relationships in subsequent drug models where bond rotations are common. This hypothesis and five propositions are supported by stereochemistry and experimental observations.Proposition #1 The structure of morphine provides a template. Proposition #2 Steric hindrance of some centric portion of the piperidine ring explains antagonist properties of naloxone, naltrexone and alvimopam. Proposition #3 Methadone has an active conformation which contains a virtual heterocyclic ring which explains its analgesic activity and racemic properties. Proposition #4 The piperidine ring of fentanyl can assume the morphine position under conditions of nitrogen inversion. Proposition #5 The first 3 amino acid sequences of beta endorphin (l-try-gly-gly) and the active opioid dipeptide, l-tyr-pro, (as a result of a peptide turn and zwitterion bonding) form a virtual piperazine-like ring which is similar in size, shape and location to the heterocyclic rings of morphine, meperidine, and methadone. Potential flaws in this theory are discussed.This theory could be important for future analgesic drug design.

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选定阿片类和阿片肽中芳香环和杂环统一结构活动理论的立体化学基础。
本文提出了阿片类药物和阿片肽结构活性关系的新统一理论。根据假设,在所有对人体具有活性的阿片类药物中都存在一个虚拟或已知的杂环,这个环相对于药物的芳香环而言,与吗啡的哌啶环在空间上占据大致相同的平面。由于吗啡的环是刚性的,而芳香环和哌啶环又是吗啡镇痛特性的关键结构成分,因此刚性吗啡分子可以在随后的药物模型中近似地表示芳香环和杂环的关系,因为在这些模型中,键的旋转是常见的。这一假设和五个命题得到了立体化学和实验观察的支持。命题#2 哌啶环某些中心部分的立体阻碍解释了纳洛酮、纳曲酮和阿维莫潘的拮抗特性。命题#3 美沙酮的活性构象含有一个虚拟杂环,这解释了它的镇痛活性和外消旋特性。命题#4 芬太尼的哌啶环在氮反转的条件下可以占据吗啡的位置。命题 5 β-内啡肽(l-try-gly-gly)和活性阿片二肽 l-tyr-pro(由于肽转折和齐聚键)的前 3 个氨基酸序列形成了一个虚拟的哌嗪环,其大小、形状和位置与吗啡、美培林和美沙酮的杂环相似。该理论可能对未来的镇痛药物设计非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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