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首页> 外文期刊>International Journal of Molecular Sciences >Förster Resonance Energy Transfer (FRET) Correlates of Altered Subunit Stoichiometry in Cys-Loop Receptors, Exemplified by Nicotinic α4β2
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Förster Resonance Energy Transfer (FRET) Correlates of Altered Subunit Stoichiometry in Cys-Loop Receptors, Exemplified by Nicotinic α4β2

机译:Förster共振能量转移(FRET)与Cys-Loop受体中改变的亚基化学计量相关,例如烟碱α4β2。

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We provide a theory for employing Förster resonance energy transfer (FRET) measurements to determine altered heteropentameric ion channel stoichiometries in intracellular compartments of living cells. We simulate FRET within nicotinic receptors (nAChRs) whose α4 and β2 subunits contain acceptor and donor fluorescent protein moieties, respectively, within the cytoplasmic loops. We predict FRET and normalized FRET (NFRET) for the two predominant stoichiometries, (α4)3(β2)2 vs. (α4)2(β2)3. Studying the ratio between FRET or NFRET for the two stoichiometries, minimizes distortions due to various photophysical uncertainties. Within a range of assumptions concerning the distance between fluorophores, deviations from plane pentameric geometry, and other asymmetries, the predicted FRET and NFRET for (α4)3(β2)2 exceeds that of (α4)2(β2)3. The simulations account for published data on transfected Neuro2a cells in which α4β2 stoichiometries were manipulated by varying fluorescent subunit cDNA ratios: NFRET decreased monotonically from (α4)3(β2)2 stoichiometry to mostly (α4)2(β2)3. The simulations also account for previous macroscopic and single-channel observations that pharmacological chaperoning by nicotine and cytisine increase the (α4)2(β2)3 and (α4)3(β2)2 populations, respectively. We also analyze sources of variability. NFRET-based monitoring of changes in subunit stoichiometry can contribute usefully to studies on Cys-loop receptors.
机译:我们提供了利用Förster共振能量转移(FRET)测量来确定活细胞胞内区室中改变的杂五聚体离子通道化学计量的理论。我们模拟烟碱受体(nAChRs)中的FRET,其α4和β2亚基分别在胞质环内包含受体和供体荧光蛋白部分。我们预测两种主要的化学计量比(α4) 3 (β2) 2 与(α4) 2 的FRET和归一化FRET(NFRET) (β2) 3 。研究两种化学计量的FRET或NFRET之间的比率,可将由于各种光物理不确定性而引起的畸变降至最低。在关于荧光团之间的距离,与平面五聚体几何的偏离以及其他不对称性的一系列假设中,(α4) 3 (β2) 2 的预测FRET和NFRET超过(α4) 2 (β2) 3 的值。该模拟解释了转染的Neuro2a细胞的已公开数据,其中通过改变荧光亚基cDNA的比例来操纵α4β2的化学计量:NFRET从(α4) 3 (β2) 2 的化学计量单调减少大部分为(α4) 2 (β2) 3 。该模拟还说明了以前的宏观和单通道观察结果,即尼古丁和半胱氨酸的药理伴随作用会增加(α4) 2 (β2) 3 和(α4) 3 (β2) 2 种群。我们还分析了可变性的来源。基于NFRET的亚单位化学计量变化的监测可以对Cys环受体的研究做出有益的贡献。

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