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Interaction of Tetraphenylphosphonium and Dodecyltriphenylphosphonium with Lipid Membranes and Mitochondria

机译:四苯基phosph和十二烷基三苯基phosph与脂质膜和线粒体的相互作用

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摘要

The permeability of a planar lipid membrane (composed of diphytanoylphosphatidylcholine) for tetraphenylphosphonium (TPP) was investigated. The observed level of the diffusion potential generated as a function of the TPP concentration gradient differed from the theoretically expected value, possibly due to proton leakage of the membrane mediated by the traces of fatty acids in the phospholipid forming the membrane. Using the molecular dynamics approach to study movement of TPP and dodecyltriphenylphosphonium (C_(12)TPP) with different affinity to the lipid bilayer through a bilayer lipid membrane, it was found that C_(12)TPP has a greater affinity to the membrane surface than TPP. However, the two cations have the same activation energy for transmembrane transfer. Interaction of TPP and C_(12)TPP with tightly-coupled mitochondria from the yeast Yarrowia lipolytica was also investigated. At low, micromolar concentrations, both cations are "relatively weak, mild uncouplers", do not shunt electron transfer along the respiratory chain, do not disturb (damage) the inner mitochondrial membrane, and profoundly promote the uncoupling effect of fatty acids. At higher concentrations they inhibit respiration in state 3, and at much higher concentrations they induce swelling of mitochondria, possibly due to their detergent action.
机译:研究了平面脂质膜(由二植烷酰基磷脂酰胆碱组成)对四苯基phosph(TPP)的渗透性。观察到的作为TPP浓度梯度函数的扩散电位水平与理论上的预期值不同,这可能是由于形成膜的磷脂中的痕量脂肪酸介导的膜质子泄漏。使用分子动力学方法研究具有不同亲和力的TPP和十二烷基三苯基)(C_(12)TPP)通过双层脂质膜对脂质双层的运动,发现C_(12)TPP对膜表面的亲和力大于TPP。但是,两个阳离子具有相同的跨膜转移活化能。还研究了TPP和C_(12)TPP与解脂耶氏酵母酵母线粒体紧密耦合的相互作用。在低摩尔浓度下,两种阳离子都是“相对较弱的,温和的解偶联剂”,不会使电子沿着呼吸链转移,不会干扰(破坏)线粒体内膜,并显着促进脂肪酸的解偶联作用。浓度较高时,它们会抑制状态3中的呼吸,浓度较高时,它们可能会由于其去污剂作用而引起线粒体肿胀。

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