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Gel-Phase Microdomains and Lipid Rafts in Monolayers Affect the Redox Properties of Ubiquinone-10

机译:单层中的凝胶相微区和脂质筏影响Ubiquinone-10的氧化还原特性。

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摘要

The redox properties of ubiquinone-10 (UQ) were examined in monolayers of mixtures of dioleoylphosphatidylcholine, palmitoylsphingomyelin, and cholesterol of different compositions, self-assembled on a mercury electrode, over the pH range from 7.5 to 9.5. A detailed analysis of the cyclic voltammograms of UQ in the above lipid environments points to a mechanism consisting of an elementary electron transfer step followed by two protonation (or deprotonation) steps in quasiequilibrium and by a further electron transfer step. In a lipid environment of solid-ordered (so) microdomains in a liquid-disordered (ld) matrix, electron transport across the lipid monolayer takes place in the ld phase. In a pure so phase, UQ tends to segregate into UQ-rich pools, exhibiting reversible electron transfer steps. In a lipid environment consisting of liquid-ordered (lo) microdomains (lipid rafts) in an ld matrix, UQ molecules tend to localize along the edge of the lipid rafts. However, in a lipid environment consisting exclusively of lo and so microdomains, UQ molecules tend to segregate into UQ-rich pools. In all lipid environments, electron transport by UQ occurs with the quinone moiety localized on the solution side with respect to the ester linkages of the dioleoylphosphatidylcholine molecules.
机译:在7.5至9.5的pH范围内,在汞电极上自组装的,不同组成的油酰磷脂酰胆碱,棕榈酰鞘磷脂和胆固醇的混合物的单层混合物中,研究了泛醌10(UQ)的氧化还原特性。在上述脂质环境中对UQ的循环伏安图的详细分析指出了一种机制,该机制由基本电子转移步骤,准平衡中的两个质子化(或去质子化)步骤以及进一步的电子转移步骤组成。在液体无序(ld)基质中的固态有序(so)微区的脂质环境中,跨过脂质单层的电子传输在ld相中发生。在纯纯相中,UQ倾向于分离成富含UQ的池,表现出可逆的电子转移步骤。在由ld矩阵中的液态有序(lo)微域(脂质筏)组成的脂质环境中,UQ分子倾向于沿着脂质筏的边缘定位。但是,在仅由一个和一个这样的微区组成的脂质环境中,UQ分子倾向于分离成富含UQ的库。在所有脂质环境中,通过UQ进行的电子传输都发生在相对于二油酰基磷脂酰胆碱分子的酯键位于溶液侧的醌部分。

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