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Proapoptotic Triterpene Electrophiles (Avicins) Form Channels in Membranes: Cholesterol Dependence

机译:膜中促凋亡的三萜亲电体(阿维生素)形成通道:胆固醇依赖性

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摘要

Avicins, a family of triterpenoid saponins from Acacia victoriae, can regulate the innate stress response in human cells. Their ability to induce apoptosis in transformed cells makes them potential anticancer agents. We report that avicins can form channels in membranes. The conductance reached a steady state after each addition, indicating a dynamic equilibrium between avicin in solution and in the membrane. The high power dependence (up to 10) of the membrane conductance on the avicin concentration indicates the formation of multimeric channels, consistent with the estimated pore radius of 1.1 nm. This radius is too small to allow protein flux across the mitochondrial outer membrane, a process known to initiate apoptosis. Channel formation is lost when avicin's amphipathic side chain is removed, implicating this as the channel-forming region. A small difference in this side chain results in strong cholesterol dependence of channel formation in avicin G that is not found in avicin D. In neutral membranes, avicin channels are nonselective, but negatively-charged lipids confer cation selectivity (5:1, K+:Cl), indicating that phospholipids form part of the permeation pathway. Avicin channels in the mitochondrial outer membrane may favor apoptosis by altering the potential across this membrane and the intermembrane space pH.
机译:来自维氏相思树(Acacia victoriae)的三萜皂苷家族的Avicins可以调节人类细胞中的先天应激反应。它们诱导转化细胞凋亡的能力使其成为潜在的抗癌剂。我们报道阿维菌素可以在膜中形成通道。每次添加后电导达到稳定状态,表明溶液和膜中阿维菌素之间存在动态平衡。膜电导对阿维菌素浓度的高功率依赖性(最高为10)表明形成了多聚体通道,与估计的1.1 nm孔半径一致。该半径太小,以至于不允许蛋白质流过线粒体外膜,该过程已知会引发细胞凋亡。当去除阿维奇的两亲性侧链时,通道形成丢失,这暗示其为通道形成区域。该侧链的微小差异会导致阿维菌素G中通道形成对胆固醇的强烈依赖性,这在阿维菌素D中没有。 sup> + :Cl -),表明磷脂形成了渗透途径的一部分。线粒体外膜中的阿维丁通道可能会通过改变跨膜电位和跨膜空间pH值来促进凋亡。

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