通过弱亲和力和分子辨别力水合作用的全麻药结合模式:一般麻醉剂在 GABAA 受体共同结合位点界面水中的溶解。

Biophysics and Physicobiology Pub Date : 2023-01-25 eCollection Date: 2023-01-01 DOI:10.2142/biophysico.bppb-v20.0005
Tomoyoshi Seto
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引用次数: 0

摘要

GABAA 受体(GABAAR)是全身麻醉失去知觉的目标通道。全身麻醉剂(GA)的化学结构多种多样,如单原子分子、巴比妥酸、酚类、醚类和烷类。GA 具有较弱的结合亲和力,这种亲和力的特征与在橄榄油中的溶解度而不是分子形状有关。GABAAR 的 GA 结合位点是 GAs 的共性,存在于 GABAAR 亚基间的跨膜结构域中。本研究通过对该结合位点的水合分析,阐明了 GA 的结合机制,该机制使各种 GA 的结合具有亚基间选择性。无论 GA 的化学结构如何变化,在结合过程中,结合自由能与总脱水数之间都存在很强的相关性。GA 的结合自由能更多地参与了结合脱水过程,并显示出分子识别能力,通过结合位点的水合作用使各种 GA 结构得以结合。我们认为,GA 对结合位点界面水分子的取代是对界面水合层的溶解。通过阐明 GABAAR 共同结合位点水合介导的 GA 结合机制,为医疗实践中麻醉剂的联合使用及其通过药物相互作用进行联合调整提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
General anesthetic binding mode via hydration with weak affinity and molecular discrimination: General anesthetic dissolution in interfacial water of the common binding site of GABAA receptor.

The GABAA receptor (GABAAR) is a target channel for the loss of awareness of general anesthesia. General anesthetic (GA) spans a wide range of chemical structures, such as monatomic molecules, barbital acids, phenols, ethers, and alkanes. GA has a weak binding affinity, and the affinity has a characteristic that correlates with the solubility in olive oil rather than the molecular shape. The GA binding site of GABAAR is common to GAs and exists in the transmembrane domain of the GABAAR intersubunit. In this study, the mechanism of GA binding, which allows binding of various GAs with intersubunit selectivity, was elucidated from the hydration analysis of the binding site. Regardless of the diverse GA chemical structures, a strong correlation was observed between the binding free energy and total dehydration number of the binding process. The GA binding free energy was more involved in the binding dehydration and showed molecular recognition that allowed for the binding of various GA structures via binding site hydration. We regarded the GA substitution for the interfacial water molecule of the binding site as a dissolution into the interfacial hydration layer. The elucidation of the GA binding mechanism mediated by hydration at the GABAAR common binding site provides a rationale for the combined use of anesthetics in medical practice and its combination adjustments via drug interactions.

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