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各向异性衰减相关荧光光谱及旋转异质性分析。2. 脂质双分子层中的1,6-二苯基-1,3,5-己三烯

Anisotropy decay associated fluorescence spectra and analysis of rotational heterogeneity. 2. 1,6-Diphenyl-1,3,5-hexatriene in lipid bilayers.

作者信息

Davenport L, Knutson J R, Brand L

出版信息

Biochemistry. 1986 Apr 8;25(7):1811-6. doi: 10.1021/bi00355a054.

Abstract

The application of a new spectroscopic tool [Knutson, J. R., Davenport, L., & Brand, L. (1986) Biochemistry (preceding paper in this issue)] for studying rotational microheterogeneity of probe location in lipid bilayer systems is described. Anisotropy decay associated spectra are derived from experimentally obtained polarized emission components. "Early" difference spectra (IV - IH) contain contributions from both fast and slow rotors, while "late" difference spectra predominantly reflect the emission from slowly rotating fluorophores. Anisotropy decay associated spectra have been used to resolve the emission spectra of 1,6-diphenyl-1,3,5-hexatriene (DPH) imbedded within a known rotationally heterogeneous mixture of two vesicle types (L-alpha-dimyristoyllecithin and L-alpha-dipalmitoyllecithin). At 29 degrees C, diphenylhexatriene within pure dimyristoyllecithin vesicles rotates rapidly, with a small r infinity, while diphenylhexatriene in dipalmitoyllecithin vesicles exhibits a large r infinity. Spectra for diphenylhexatriene imbedded in the two vesicle types show small but significant spectral differences. A spectrum of a mixture of the two vesicle types with DPH lies between these characteristic component spectra. The spectrum extracted for "immobilized" probes in the mixture correctly overlays the dipalmitoyllecithin spectrum. Further studies have shown that diphenylhexatriene exhibits more than one emission anisotropy decay associated spectrum in vesicles of a single lipid type, when that lipid is near its phase transition temperature. Diphenylhexatriene apparently inhabits more than one rotational environment even in these "homogeneous" vesicle preparations.

摘要

本文描述了一种用于研究脂质双层系统中探针位置旋转微观不均一性的新型光谱工具[克努森,J. R.,达文波特,L.,& 布兰德,L.(1986年)《生物化学》(本期之前的论文)]的应用。各向异性衰减相关光谱是从实验获得的偏振发射分量推导出来的。“早期”差光谱(IV - IH)包含快速和慢速转子的贡献,而“晚期”差光谱主要反映慢速旋转荧光团的发射。各向异性衰减相关光谱已用于解析嵌入两种囊泡类型(L-α-二肉豆蔻酰卵磷脂和L-α-二棕榈酰卵磷脂)已知旋转不均一混合物中的1,6-二苯基-1,3,5-己三烯(DPH)的发射光谱。在29℃时,纯二肉豆蔻酰卵磷脂囊泡中的二苯基己三烯快速旋转,r∞较小,而二棕榈酰卵磷脂囊泡中的二苯基己三烯表现出较大的r∞。嵌入两种囊泡类型中的二苯基己三烯的光谱显示出小但显著的光谱差异。含有DPH的两种囊泡类型混合物的光谱位于这些特征性组分光谱之间。从混合物中“固定化”探针提取的光谱正确地叠加了二棕榈酰卵磷脂光谱。进一步的研究表明,当单一脂质类型的囊泡接近其相变温度时,二苯基己三烯在其中表现出不止一种发射各向异性衰减相关光谱。即使在这些“均匀”的囊泡制剂中,二苯基己三烯显然也占据不止一种旋转环境。

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