脂质和烟碱乙酰胆碱受体复合荧光光谱的多变量分析揭示了蛋白质介导对受体即时脂质微环境的影响。

Jorge J Wenz, Francisco J Barrantes
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引用次数: 3

摘要

分析含有多种荧光探针的复杂生物系统的荧光光谱是一项具有挑战性的任务。然而,通过对不同波长的测量数据进行多元分析(MA),可以从全光谱中提取有价值的信息。将纯化的鱼雷烟碱乙酰胆碱受体(AChR)蛋白重组为二油基磷脂酸(DOPA)和二油基磷脂酰胆碱(DOPC)脂体,并掺杂两种外源荧光探针(nbd -胆固醇/芘- pc),对其光谱数据进行了分析。Förster在蛋白与芘- pc之间以及芘- pc与nbd -胆固醇之间观察到共振能量转移(FRET),导致发射带重叠。将偏最小二乘分析应用于不同DOPC/DOPA比的脂质体中芘- pc的荧光光谱,生成的模型通过内部验证(留一交叉验证)进行测试,并进一步用于预测含achr样品中的表观脂质摩尔比。Tm最高的脂质DOPA的预测值表明,该蛋白对其脂质微环境具有硬化作用。从芘- pc的准分子形成(一种依赖于碰撞的现象)中也得到了类似的结论。不同DOPC/DOPA摩尔比下的准分子/单体比(E/M)表明,与不含蛋白质的纯脂质样品相比,探针在含achr样品中的扩散受到限制。从AChR(供体)到pyrene-PC(受体)的FRET随温度的升高而增加,表明AChR与pyrene-PC之间的距离较短。综上所述,MA在复合光谱上得到的结果表明,AChR固化了其周围的脂质,并且在其直接微环境中更倾向于DOPA而不是DOPC。PACS代码:32.50。+ d, 33.50.Dq。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Resolution of complex fluorescence spectra of lipids and nicotinic acetylcholine receptor by multivariate analysis reveals protein-mediated effects on the receptor's immediate lipid microenvironment.

Analysis of fluorescent spectra from complex biological systems containing various fluorescent probes with overlapping emission bands is a challenging task. Valuable information can be extracted from the full spectra, however, by using multivariate analysis (MA) of measurements at different wavelengths. We applied MA to spectral data of purified Torpedo nicotinic acetylcholine receptor (AChR) protein reconstituted into liposomes made up of dioleoylphosphatidic acid (DOPA) and dioleoylphosphatidylcholine (DOPC) doped with two extrinsic fluorescent probes (NBD-cholesterol/pyrene-PC). Förster resonance energy transfer (FRET) was observed between the protein and pyrene-PC and between pyrene-PC and NBD-cholesterol, leading to overlapping emission bands. Partial least squares analysis was applied to fluorescence spectra of pyrene-PC in liposomes with different DOPC/DOPA ratios, generating a model that was tested by an internal validation (leave-one-out cross-validation) and was further used to predict the apparent lipid molar ratio in AChR-containing samples. The values predicted for DOPA, the lipid with the highest Tm, indicate that the protein exerts a rigidifying effect on its lipid microenvironment. A similar conclusion was reached from excimer formation of pyrene-PC, a collisional-dependent phenomenon. The excimer/monomer ratio (E/M) at different DOPC/DOPA molar ratios revealed the restricted diffusion of the probe in AChR-containing samples in comparison to pure lipid samples devoid of protein. FRET from the AChR (donor) to pyrene-PC (acceptor) as a function of temperature was found to increase with increasing temperature, suggesting a shorter distance between AChR and pyrene PC. Taken together, the results obtained by MA on complex spectra indicate that the AChR rigidifies its surrounding lipid and prefers DOPA rather than DOPC in its immediate microenvironment. PACS Codes: 32.50.+d, 33.50.Dq.

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