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膜脂组织与烟碱型乙酰胆碱受体功能:一种双向的生理关系。

Membrane lipid organization and nicotinic acetylcholine receptor function: A two-way physiological relationship.

机构信息

Instituto de Investigaciones Bioquímicas de Bahía Blanca CONICET-UNS, Departamento de Biología, Bioquímica y Farmacia, Universidad Nacional del Sur, Bahía Blanca, Argentina.

Max Planck Institute of Colloids and Interfaces, Science Park Golm, Potsdam, 14476, Germany.

出版信息

Arch Biochem Biophys. 2022 Nov 15;730:109413. doi: 10.1016/j.abb.2022.109413. Epub 2022 Sep 30.

Abstract

Nicotinic acetylcholine receptors (nAChRs) are involved in a great range of physiological and pathological conditions. Since they are transmembrane proteins, they interact strongly with the lipids surrounding them. Thus, the plasma membrane composition and heterogeneity play an essential role for the correct nAChR function, on the one hand, and the nAChR influences its immediate lipid environment, on the other hand. The aim of this work was to investigate in more detail the role of the biophysical properties of the membrane in nAChR function and vice versa, focusing on the relationship between Chol and nAChRs. To this end, we worked with different model systems which were treated either with (i) more Chol, (ii) cholesteryl hemisuccinate, or (iii) the enzyme cholesterol oxidase to generate different membrane sterol conditions and in the absence and presence of γTM4 peptide as a representative model of the nAChR. Fluorescence measurements with crystal violet and patch-clamp recordings were used to study nAChR conformation and function, respectively. Using confocal microscopy of giant unilamellar vesicles we probed the membrane phase state/order and organization (coexistence of lipid domains) and lipid-nAChR interaction. Our results show a feedback relationship between membrane organization and nAChR function, i.e. whereas the presence of a model of nAChRs conditions membrane organization, changing its lipid microenvironment, membrane organization and composition perturb nAChRs function. We postulate that nAChRs have a gain of function in disordered membrane environments but a loss of function in ordered ones, and that Chol molecules at the outer leaflet in annular sites and at the inner leaflet in non-annular sites are related to nAChR gating and desensitization, respectively. Thus, depending on the membrane composition, organization, and/or order, the nAChR adopts different conformations and locates in distinct lipid domains and this has a direct effect on its function.

摘要

烟碱型乙酰胆碱受体(nAChRs)参与了广泛的生理和病理状态。由于它们是跨膜蛋白,因此与周围的脂质强烈相互作用。因此,一方面,质膜的组成和异质性对于正确的 nAChR 功能起着至关重要的作用,另一方面,nAChR 会影响其周围的脂质环境。本工作的目的是更详细地研究膜的生物物理特性在 nAChR 功能中的作用以及反之亦然,重点研究 Chol 和 nAChRs 之间的关系。为此,我们使用了不同的模型系统,这些系统要么用(i)更多的 Chol,要么用(ii)胆固醇半琥珀酸酯,要么用(iii)胆固醇氧化酶处理,以产生不同的膜固醇条件,以及在 absence 和 presence 下使用 γTM4 肽作为 nAChR 的代表模型。使用结晶紫荧光测量和膜片钳记录分别研究 nAChR 的构象和功能。使用巨单层囊泡的共聚焦显微镜探测膜相状态/顺序和组织(脂质域的共存)以及脂质-nAChR 相互作用。我们的结果显示了膜组织和 nAChR 功能之间的反馈关系,即当存在 nAChR 的模型时,它会调节膜组织,改变其脂质微环境,而膜组织和组成则会干扰 nAChR 的功能。我们假设 nAChR 在无序的膜环境中具有功能增益,但在有序的膜环境中具有功能丧失,并且外叶中的胆固醇分子位于环形位置,内叶中的胆固醇分子位于非环形位置,分别与 nAChR 的门控和脱敏有关。因此,根据膜的组成、组织和/或顺序,nAChR 会采用不同的构象,并位于不同的脂质域中,这直接影响其功能。

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