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通过荧光各向异性衰减的高阶分析确定的不饱和酰基链磷脂酰胆碱 - 胆固醇 - 视紫红质重组囊泡和视杆外段盘膜的平衡和动态双层结构性质

Equilibrium and dynamic bilayer structural properties of unsaturated acyl chain phosphatidylcholine-cholesterol-rhodopsin recombinant vesicles and rod outer segment disk membranes as determined from higher order analysis of fluorescence anisotropy decay.

作者信息

Straume M, Litman B J

机构信息

Department of Biochemistry, University of Virginia School of Medicine, Charlottesville 22908.

出版信息

Biochemistry. 1988 Oct 4;27(20):7723-33. doi: 10.1021/bi00420a022.

Abstract

Limited-frequency phase-modulation fluorometry of diphenylhexatriene (DPH) and trimethylammonium-diphenylhexatriene (TMA-DPH) was used to characterize the equilibrium and dynamic lipid structural properties of (1) reconstituted egg phosphatidylcholine (egg PC)-rhodopsin vesicles varying in rhodopsin content from 0 to approximately 1 mol %, (2) reconstituted PC-cholesterol-rhodopsin vesicles containing approximately 1 mol % rhodopsin and 0, approximately 15, or approximately 30 mol % cholesterol with egg PC, DOPC (di-18:1-PC), or PAPC (16:0,20:4-PC) as the phospholipid constituent, and (3) native bovine rod outer segment disk membranes. Experiments were conducted at 37, 25, 15, and 5 degrees C. Fluorescence lifetime analysis was performed by fitting the data to a constrained, discrete, biexponential model. Rotational depolarization properties were considered by a model requiring a single rotational diffusion coefficient and capable of producing orthogonal, bimodal orientational distributions for DPH and unimodal distributions for TMA-DPH [Straume, M., & Litman, B. J. (1987) Biochemistry 26, 5113-5120]. Unbleached rhodopsin reduced mean fluorophore lifetimes in proportion to the amount of protein present in PC vesicles as a result of probe-to-retinal energy transfer by (1) redistributing the relative lifetime contributions in favor of the short lifetime population and (2) reducing the lifetimes of each derived population. Lifetimes were increased by cholesterol and by reduction of the temperature, but the relative proportions of derived short- and long-lifetime populations were not affected. TMA-DPH lifetimes were more sensitive (in a relative manner) than were those of DPH. These observations are interpreted in terms of cholesterol and reduced temperature each inhibiting water penetrability into these bilayers, with a greater effect occurring in the headgroup and interfacial regions (probed by TMA-DPH) than in the hydrophobic bilayer interior (probed by DPH). Diunsaturated DOPC-rhodopsin recombinants were more resistant to temperature-dependent lifetime changes than were mixed-chain egg PC or PAPC vesicles. This suggests less favorable interaction of rhodopsin with diunsaturated PCs than with mixed-chain PCs. Lifetimes in disk membranes exhibited this same temperature dependence although DPH in disks had lifetimes longer than those seen in recombinant vesicles. TMA-DPH lifetimes in disks were more similar to those observed in cholesterol-containing recombinants. It would therefore appear that the large proportion of small, charged (at pH 7) phosphatidylethanolamine and phosphatidylserine headgroups present in disks reduces water penetrability into the d

摘要

采用二苯基己三烯(DPH)和三甲基铵 - 二苯基己三烯(TMA - DPH)的有限频率相位调制荧光法,来表征以下几种体系的平衡和动态脂质结构特性:(1)视紫红质含量从0至约1摩尔%变化的重组鸡蛋磷脂酰胆碱(鸡蛋PC) - 视紫红质囊泡;(2)含有约1摩尔%视紫红质以及0、约15或约30摩尔%胆固醇,以鸡蛋PC、二油酰磷脂酰胆碱(DOPC,二 - 18:1 - PC)或花生四烯酰磷脂酰胆碱(PAPC,16:0,20:4 - PC)作为磷脂成分的重组PC - 胆固醇 - 视紫红质囊泡;(3)天然牛视杆外段盘膜。实验在37、25、15和5摄氏度下进行。通过将数据拟合到一个受约束的离散双指数模型来进行荧光寿命分析。通过一个需要单一旋转扩散系数且能够为DPH产生正交双峰取向分布以及为TMA - DPH产生单峰分布的模型来考虑旋转去极化特性[斯特劳姆,M.,& 利特曼,B. J.(1987年)《生物化学》26,5113 - 5120]。未漂白的视紫红质会使PC囊泡中平均荧光团寿命按蛋白质含量成比例降低,这是由于通过(1)重新分配相对寿命贡献,有利于短寿命群体,以及(2)降低每个衍生群体的寿命,从而实现探针到视黄醛的能量转移。胆固醇和降低温度会增加寿命,但衍生的短寿命和长寿命群体的相对比例不受影响。TMA - DPH寿命比DPH寿命更敏感(相对而言)。这些观察结果的解释是,胆固醇和降低温度各自抑制水渗透到这些双层膜中,在头基团和界面区域(由TMA - DPH探测)的影响比在疏水双层内部(由DPH探测)更大。二不饱和的DOPC - 视紫红质重组体比混合链的鸡蛋PC或PAPC囊泡对温度依赖性寿命变化更具抗性。这表明视紫红质与二不饱和PC的相互作用不如与混合链PC的相互作用有利。盘膜中的寿命也表现出相同的温度依赖性,尽管盘中的DPH寿命比重组囊泡中的长。盘中TMA - DPH寿命与含胆固醇重组体中观察到的更相似。因此,似乎盘中存在的大量小的、带电荷的(在pH 7时)磷脂酰乙醇胺和磷脂酰丝氨酸头基团降低了水渗透到盘膜中。

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