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磷脂酰胆碱 - 极性类胡萝卜素膜的自旋标记研究:烷基链长度和不饱和度的影响。

Spin-label studies on phosphatidylcholine-polar carotenoid membranes: effects of alkyl-chain length and unsaturation.

作者信息

Subczynski W K, Markowska E, Sielewiesiuk J

机构信息

Biophysics Department, Institute of Molecular Biology, Jagiellonian University, Krakow, Poland.

出版信息

Biochim Biophys Acta. 1993 Aug 15;1150(2):173-81. doi: 10.1016/0005-2736(93)90087-g.

Abstract

Spin-labeling methods were used to study the structure and dynamic properties of phosphatidylcholine (PC)-dihydroxycarotenoid membranes as a function of phospholipid alkyl chain length, alkyl chain saturation, temperature and mol fraction of carotenoids. (1) Dihydroxycarotenoids, zeaxanthin and violaxanthin increase order and decrease motional freedom of the lipid alkyl chains in fluid-phase PC membranes. The effect of carotenoids decreases as the alkyl chain length of saturated PC increases. (2) The abrupt changes of spin-label motion observed at the main-phase transition of the saturated PC membranes are broadened and shifted to lower temperatures. At a carotenoid concentration of 10 mol%, they disappear for short-chain PC membranes (12-14 carbons), but are still observed for long-chain PC membranes (18-22 carbons). (3) In fluid-phase PC membranes possessing short alkyl chains (12-14 carbons), the activation energy of the rotational diffusion of 16-doxylstearic acid spin label (16-SASL) is significantly lower at a carotenoid concentration of 10 mol%. The difference decreases as the alkyl-chain length increases. (4) The presence of unsaturated alkyl chains greatly reduces the effects of carotenoids on the mobility of the polar headgroups as observed with tempocholine dipalmitoylphosphatidic acid ester and on the order of alkyl chains near the polar headgroup region as observed with 5-doxylstearic acid spin label (5-SASL). The effect of unsaturation is, however, moderate in the membrane center as shown with 16-SASL. Also, the effect of carotenoids on the order and motion of the rigid and highly anisotropic molecules dissolved in the PC membranes is significantly greater in saturated PC membranes.

摘要

采用自旋标记法研究了磷脂酰胆碱(PC)-二羟基类胡萝卜素膜的结构和动态特性,该研究考察了磷脂烷基链长度、烷基链饱和度、温度和类胡萝卜素摩尔分数的影响。(1)二羟基类胡萝卜素、玉米黄质和紫黄质增加了液相PC膜中脂质烷基链的有序性并降低了其运动自由度。随着饱和PC烷基链长度的增加,类胡萝卜素的这种影响减弱。(2)在饱和PC膜的主相变处观察到的自旋标记运动的突然变化变宽并向低温偏移。在类胡萝卜素浓度为10 mol%时,短链PC膜(12 - 14个碳)中这些变化消失,但在长链PC膜(18 - 22个碳)中仍可观察到。(3)在具有短烷基链(12 - 14个碳)的液相PC膜中,在类胡萝卜素浓度为10 mol%时,16 - 脱氧硬脂酸自旋标记(16 - SASL)的旋转扩散活化能显著降低。随着烷基链长度增加,这种差异减小。(4)如用双棕榈酰磷脂酸坦波胆碱酯所观察到的,不饱和烷基链的存在极大地降低了类胡萝卜素对极性头基团流动性的影响,以及如用5 - 脱氧硬脂酸自旋标记(5 - SASL)所观察到的,在极性头基团区域附近烷基链的有序性。然而在膜中心,如用16 - SASL所示,不饱和的影响适中。此外,在饱和PC膜中,类胡萝卜素对溶解在PC膜中的刚性且高度各向异性分子的有序性和运动的影响显著更大。

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