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Rapid kinetics of insertion and accessibility of spin-labeled phospholipid analogs in lipid membranes: a stopped-flow electron paramagnetic resonance approach.

机译:脂质膜中自旋标记的磷脂类似物的插入和可及性的快速动力学:一种停止流动的电子顺磁共振方法。

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摘要

Spin-labeled phospholipid analogs have been employed to probe the transbilayer distribution of endogenous phospholipids in various membrane systems. To determine the transmembrane distribution of the spin-labeled analogs, the analogs are usually inserted into the membrane of interest and subsequently the amount of analog in the outer membrane leaflet is determined either by chemical reduction with ascorbate or by back-exchange to bovine serum albumin (BSA). For accurate determination of the transbilayer distribution of analogs, both the kinetics of incorporation and those of accessibility of analogs to ascorbate or BSA have to be fast in comparison to their transbilayer movement. By means of stopped-flow electron paramagnetic resonance (EPR) spectroscopy, we have studied the kinetics of incorporation of the spin-labeled phosphatidylcholine (PC) analog 1-palmitoyl-2-(4-doxylpentanoyl)-sn-glycero-3-phosphocholine (SL-PC) and of its accessibility to chemical reduction and to back-exchange at room temperature. Incorporation of SL-PC into the outer leaflet of egg phosphatidylcholine (EPC) and red cell ghost membranes was essentially completed within 5 s. Ninety percent of the SL-PC molecules located in the outer membrane leaflet of those membranes were extracted by BSA within 15 s. All exterior-facing SL-PC molecules were reduced by ascorbate in a pseudo-first-order reaction within 60 s in EPC membranes and within 90 s in red cell ghost membranes. The rate of the reduction process could be enhanced by approximately 30-fold when 6-O-phenyl-ascorbic acid was used instead of ascorbate as the reducing agent. The results are discussed in light of assaying rapid transbilayer movement of spin-labeled analogs in biological membranes.
机译:自旋标记的磷脂类似物已被用于探测各种膜系统中内源性磷脂的双分子层分布。为了确定自旋标记类似物的跨膜分布,通常将类似物插入目标膜中,然后通过抗坏血酸化学还原或将牛血清白蛋白反向交换来确定外膜小叶中类似物的量。 (BSA)。为了准确确定类似物的跨双层分布,与它们的跨双层运动相比,掺入动力学和类似物抗坏血酸或BSA的可及性都必须快。通过停止流电子顺磁共振(EPR)光谱,我们研究了自旋标记的磷脂酰胆碱(PC)类似物1-棕榈酰-2-(4-doxylpentanoyl)-sn-glycero-3-phosphocholine的结合动力学。 (SL-PC)及其在室温下化学还原和反向交换的可及性。将SL-PC掺入卵磷脂酰胆碱(EPC)和红细胞鬼膜的外部小叶基本上在5 s内完成。在15秒内,BSA提取了位于这些膜外膜小叶中的SL-PC分子的90%。在EPC膜中60秒内和在红细胞鬼膜中90秒内,所有拟外反应的SL-PC分子均通过伪一级反应被抗坏血酸还原。当使用6-O-苯基-抗坏血酸代替抗坏血酸盐作为还原剂时,还原过程的速率可以提高约30倍。根据测定生物膜中自旋标记类似物的快速跨双层运动来讨论结果。

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