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Chemical and functional studies on the importance of purple membrane lipids in bacteriorhodopsin photocycle behavior

机译:化学和功能研究的紫色膜脂质在细菌视紫红质光循环行为中的重要性

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>In native purple membrane (PM), there are approximately 1 squalene, 2 glycolipid sulfate (GLS), and 6 phospholipid (PL) molecules per bacteriorhodopsin (BR) monomer [10]. Brief (∼ 2 min) exposure to 0.1% Triton X-100 removes about 25%, 20%, and 6% of squalenes, GLS, and PL, respectively (this paper) while causing profound changes in the BR photocycle, including the loss of ‘photocooperativity’ [1]. The BR photocycle in Triton-treated PM can be restored to near normal behavior by reconstitution with native PM lipids. Isolated squalenes are not effective whereas PL alone partially restores normal photocycle characteristics.
机译:>每个细菌视紫红质(BR)单体中,天然紫色膜(PM)中大约有1个角鲨烯,2个糖脂硫酸盐(GLS)和6个磷脂(PL)分子[10]。短暂(约2分钟)暴露于0.1%Triton X-100分别去除了约25%,20%和6%的鲨烯,GLS和PL(本文),同时引起BR光循环的深刻变化,包括损耗“光合作性” [1]。通过用天然PM脂质重建,Triton处理的PM中的BR光循环可以恢复到接近正常的行为。分离的角鲨烯无效,而单独的PL可部分恢复正常的光循环特性。

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