Marchal D, Boireau W, Laval J M, Moiroux J, Bourdillon C
Laboratoire de Technologie Enzymatique, Unité associée au CNRS No 6022, Université de Technologie de Compiègne, France.
Biophys J. 1998 Apr;74(4):1937-48. doi: 10.1016/S0006-3495(98)77902-0.
The long-range diffusion coefficients of isoprenoid quinones in a model of lipid bilayer were determined by a method avoiding fluorescent probe labeling of the molecules. The quinone electron carriers were incorporated in supported dimyristoylphosphatidylcholine layers at physiological molar fractions (<3 mol%). The elaborate bilayer template contained a built-in gold electrode at which the redox molecules solubilized in the bilayer were reduced or oxidized. The lateral diffusion coefficient of a natural quinone like UQ10 or PQ9 was 2.0 +/- 0.4 x 10(-8) cm2 s(-1) at 30 degrees C, two to three times smaller than the diffusion coefficient of a lipid analog in the same artificial bilayer. The lateral mobilities of the oxidized or reduced forms could be determined separately and were found to be identical in the 4-13 pH range. For a series of isoprenoid quinones, UQ2 or PQ2 to UQ10, the diffusion coefficient exhibited a marked dependence on the length of the isoprenoid chain. The data fit very well the quantitative behavior predicted by a continuum fluid model in which the isoprenoid chains are taken as rigid particles moving in the less viscous part of the bilayer and rubbing against the more viscous layers of lipid heads. The present study supports the concept of a homogeneous pool of quinone located in the less viscous region of the bilayer.
通过一种避免对分子进行荧光探针标记的方法,测定了类异戊二烯醌在脂质双层模型中的长程扩散系数。醌电子载体以生理摩尔分数(<3 mol%)掺入支持的二肉豆蔻酰磷脂酰胆碱层中。精心制作的双层模板包含一个内置的金电极,溶解在双层中的氧化还原分子在该电极上被还原或氧化。在30℃时,天然醌如UQ10或PQ9的横向扩散系数为2.0±0.4×10⁻⁸ cm² s⁻¹,比同一人工双层中脂质类似物的扩散系数小两到三倍。氧化态或还原态的横向迁移率可以分别测定,发现在4 - 13的pH范围内是相同的。对于一系列类异戊二烯醌,从UQ2或PQ2到UQ10,扩散系数对类异戊二烯链的长度表现出明显的依赖性。这些数据与连续流体模型预测的定量行为非常吻合,在该模型中,类异戊二烯链被视为在双层较不粘稠部分移动并与较粘稠的脂质头部层摩擦的刚性颗粒。本研究支持了醌均匀池位于双层较不粘稠区域的概念。