首页> 美国卫生研究院文献>Biophysical Journal >Time-Resolved Fluorescence and Fourier Transform Infrared Spectroscopic Investigations of Lateral Packing Defects and Superlattice Domains in Compositionally Uniform Cholesterol/Phosphatidylcholine Bilayers
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Time-Resolved Fluorescence and Fourier Transform Infrared Spectroscopic Investigations of Lateral Packing Defects and Superlattice Domains in Compositionally Uniform Cholesterol/Phosphatidylcholine Bilayers

机译:时间分辨荧光和傅里叶变换红外光谱研究胆固醇/磷脂酰胆碱双层膜中的横向堆积缺陷和超晶格域

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摘要

Time-resolved fluorescence and Fourier transform infrared spectroscopies were used to investigate the lateral organization of lipids in compositionally uniform and fully equilibrated 1-palmitoyl-2-oleoyl-phosphatidylcholine/cholesterol (POPC/CHOL) liposomes prepared by a recently devised low-temperature trapping method. Independent fluorescence decay lifetime and rotational dynamics parameters of diphenylhexatriene (DPH) chain-labeled phosphatidylcholine (DPH-PC) in these liposomes were recovered from the time-resolved fluorescence measurements as a function of cholesterol molar fraction (XCHOL) at 23°C. The results indicate significantly greater lifetime heterogeneity, shorter average lifetime, rotational correlation time, and lower order parameter of the DPH moiety at XCHOL ≈ 0.40 and 0.50 as compared to the adjacent cholesterol concentrations. Less prominent changes were also detected at, for example, XCHOL ≈ 0.20 and 0.33. These XCHOL's coincide with the “critical” XCHOL's predicted by the previously proposed superlattice (SL) model, thus indicating that POPC and cholesterol molecules tend to form SL domains where the components tend to be regularly distributed. The data also support another prediction of the SL model, namely that lateral packing defects coexist with the ordered SL domains. It appears that unfavorable interaction of the DPH-moiety of DPH-PC with cholesterol results in a preferential partition of DPH-PC to the defect regions. Fourier transform infrared analysis of the native lipid O=P=O, C=O, and C-H vibrational bands of POPC/CHOL liposomes in the absence of DPH-PC revealed an increase in the conformational order of the acyl chains and a decrease in the conformational order (or increased hydration) of the interfacial and headgroup regions at or close to the predicted critical XCHOL's. This provides additional but probe-independent evidence for SL domain formations in the POPC/CHOL bilayers. We propose that the defect regions surrounding the putative SL domains could play an important role in modulating the activity of various membrane-associated enzymes, e.g., those regulating the lipid compositions of cell membranes.
机译:时间分辨荧光和傅里叶变换红外光谱用于研究通过最近设计的低温阱制备的组成均匀且完全平衡的1-棕榈酰基-2-油酰基磷脂酰胆碱/胆固醇(POPC / CHOL)脂质体中脂质的侧向组织方法。从时间分辨的荧光测量结果中,随温度变化,在23°C下恢复了这些脂质体中二苯基己三烯(DPH)链标记的磷脂酰胆碱(DPH-PC)的独立荧光衰减寿命和旋转动力学参数。结果表明,与邻近的胆固醇浓度相比,XCHOL≈0.40和0.50时,寿命异质性显着提高,平均寿命缩短,旋转相关时间缩短,DPH部分的阶次参数降低。例如,在XCHOL≈0.20和0.33处也检测到不太明显的变化。这些XCHOL与先前提出的超晶格(SL)模型所预测的“关键” XCHOL吻合,因此表明POPC和胆固醇分子倾向于形成SL结构域,其中组分倾向于规则分布。数据还支持SL模型的另一个预测,即横向堆积缺陷与有序SL域共存。似乎DPH-PC的DPH部分与胆固醇的不利相互作用导致DPH-PC优先分配到缺损区域。在没有DPH-PC的情况下,对POPC / CHOL脂质体的天然脂质O = P = O,C = O和CH振动带进行傅里叶变换红外分析,发现酰基链的构象顺序增加,而酰基链的构象减少。在或接近预测的关键XCHOL的界面和头基区域的构象顺序(或增加的水合作用)。这为POPC / CHOL双层中的SL结构域形成提供了其他但与探针无关的证据。我们提出,推定的SL结构域周围的缺陷区域可以在调节各种膜相关酶的活性中发挥重要作用,例如,那些调节细胞膜脂质组成的酶。

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