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基于分子模拟对血啡肽与δ-阿片受体相互作用的见解。

Insights into the interaction between hemorphins and δ-opioid receptor from molecular modeling.

作者信息

Antony Priya, Baby Bincy, Vijayan Ranjit

机构信息

Department of Biology, College of Science, United Arab Emirates University, Al Ain, United Arab Emirates.

The Big Data Analytics Center, United Arab Emirates University, Al Ain, United Arab Emirates.

出版信息

Front Mol Biosci. 2024 Dec 12;11:1514759. doi: 10.3389/fmolb.2024.1514759. eCollection 2024.

Abstract

Hemorphins are short atypical opioid peptide fragments embedded in the β-chain of hemoglobin. They have received considerable attention recently due to their interaction with opioid receptors. The affinity of hemorphins to opioid receptors μ-opioid receptor (MOR), δ-opioid receptor (DOR), and κ-opioid receptor (KOR) has been well established. However, the underlying binding mode and molecular interactions of hemorphins in opioid receptors remain largely unknown. Here, we report the pattern of interaction of camel and other mammalian hemorphins with DOR. Extensive docking and molecular dynamics simulations were employed to identify intermolecular interactions and binding energies were calculated to determine the affinity of these peptides for DOR. Longer forms of hemorphins - hemorphin-7, hemorphin-6, camel hemorphin-7, and camel hemorphin-6 had strong interactions with DOR. However, camel hemorphin-7 and camel hemorphin-6 had high binding affinity towards DOR. Thus, the findings of this study provide molecular insights into how hemorphins, particularly camel hemorphin variants, could be a therapeutic agent for pain regulation, stress management, and analgesia.

摘要

血啡肽是嵌入血红蛋白β链中的短的非典型阿片样肽片段。由于它们与阿片受体的相互作用,最近受到了相当多的关注。血啡肽对阿片受体μ-阿片受体(MOR)、δ-阿片受体(DOR)和κ-阿片受体(KOR)的亲和力已经得到了充分证实。然而,血啡肽在阿片受体中的潜在结合模式和分子相互作用仍然很大程度上未知。在这里,我们报告骆驼和其他哺乳动物血啡肽与DOR的相互作用模式。采用广泛的对接和分子动力学模拟来识别分子间相互作用,并计算结合能以确定这些肽对DOR的亲和力。较长形式的血啡肽——血啡肽-7、血啡肽-6、骆驼血啡肽-7和骆驼血啡肽-6与DOR有强烈的相互作用。然而,骆驼血啡肽-7和骆驼血啡肽-6对DOR具有高结合亲和力。因此,本研究的结果为血啡肽,特别是骆驼血啡肽变体如何成为疼痛调节、压力管理和镇痛的治疗剂提供了分子见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f72/11669586/c6c9797a9cf7/fmolb-11-1514759-g001.jpg

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