首页> 外文期刊>The Journal of biological chemistry >Organelle-specific single-molecule imaging of α4β2 nicotinic receptors reveals the effect of nicotine on receptor assembly and cell-surface trafficking
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Organelle-specific single-molecule imaging of α4β2 nicotinic receptors reveals the effect of nicotine on receptor assembly and cell-surface trafficking

机译:α4β2烟碱样受体的细胞器特异性单分子成像揭示了尼古丁对受体组装和细胞表面运输的影响

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Nicotinic acetylcholine receptors (nAChRs) assemble in the endoplasmic reticulum (ER) and traffic to the cell surface as pentamers composed of α and β subunits. Many nAChR subtypes can assemble with varying subunit ratios, giving rise to multiple stoichiometries exhibiting different subcellular localization and functional properties. In addition to the endogenous neurotransmitter acetylcholine, nicotine also binds and activates nAChRs and influences their trafficking and expression on the cell surface. Currently, no available technique can specifically elucidate the stoichiometry of nAChRs in the ER versus those in the plasma membrane. Here, we report a method involving single-molecule fluorescence measurements to determine the structural properties of these membrane proteins after isolation in nanoscale vesicles derived from specific organelles. These cell-derived nanovesicles allowed us to separate single membrane receptors while maintaining them in their physiological environment. Sorting the vesicles according to the organelle of origin enabled us to determine localized differences in receptor structural properties, structural influence on transport between organelles, and changes in receptor assembly within intracellular organelles. These organelle-specific nanovesicles revealed that one structural isoform of the α4β2 nAChR was preferentially trafficked to the cell surface. Moreover, nicotine altered nAChR assembly in the ER, resulting in increased production of the receptor isoform that traffics more efficiently to the cell surface. We conclude that the combined effects of the increased assembly of one nAChR stoichiometry and its preferential trafficking likely drive the up-regulation of nAChRs on the cell surface upon nicotine exposure.
机译:烟碱型乙酰胆碱受体(nAChRs)在内质网(ER)中组装,并以由α和β亚基组成的五聚体运输到细胞表面。许多nAChR亚型可以以不同的亚基比例组装,从而产生表现出不同亚细胞定位和功能特性的多种化学计量比。除内源性神经递质乙酰胆碱外,尼古丁还结合并激活nAChR,并影响其在细胞表面的运输和表达。目前,没有可用的技术可以具体阐明ER中nAChR的化学计量与质膜中nAChR的化学计量。在这里,我们报告了一种方法,该方法涉及单分子荧光测量,以确定在衍生自特定细胞器的纳米级囊泡中分离后这些膜蛋白的结构特性。这些细胞衍生的纳米囊泡使我们能够分离单个膜受体,同时将它们保持在其生理环境中。根据起源的细胞器对囊泡进行分类,使我们能够确定受体结构特性的局部差异,对细胞器之间运输的结构影响以及细胞内细胞器中受体装配的变化。这些细胞器特异性的纳米囊泡表明,α4β2nAChR的一种结构同工型优先运输到细胞表面。此外,尼古丁改变了ER中的nAChR装配,导致受体同工型的产生增加,该受体同工型更有效地运输到细胞表面。我们得出的结论是,一种nAChR化学计量增加的装配及其优先运输的综合作用可能会导致尼古丁暴露后细胞表面nAChRs的上调。

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