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Pore formation by Vibrio cholerae cytolysin requires cholesterol in both monolayers of the target membrane

机译:霍乱弧菌溶血素形成的孔需要目标膜的两个单层胆固醇

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摘要

Vibrio cholerae cytolysin (VCC) forms oligomeric transmembrane pores in cholesterol-rich membranes. To better understand this process, we used planar bilayer membranes. In symmetric membranes, the rate of the channel formation by VCC has a superlinear dependency on the cholesterol membrane fraction. Thus, more than one cholesterol molecule can facilitate VCC-pore formation. In asymmetric membranes, the rate of pore formation is limited by the leaflet with the lower cholesterol content. Methyl-β-cyclodextrin, which removes cholesterol from membranes, rapidly inhibits VCC pore formation, even when it is added to the side opposite that of VCC addition. The results suggest that cholesterol in both membrane leaflets aid VCC-pore formation and that either leaflet can function as a kinetic bottleneck with respect to the rate of pore-formation.
机译:霍乱弧菌溶细胞素(VCC)在富含胆固醇的膜中形成寡聚跨膜孔。为了更好地理解此过程,我们使用了平面双层膜。在对称膜中,VCC形成通道的速率对胆固醇膜部分具有超线性依赖性。因此,一个以上的胆固醇分子可以促进VCC孔的形成。在不对称膜中,孔的形成速度受到胆固醇含量较低的小叶的限制。甲基-β-环糊精可从膜上去除胆固醇,即使将其添加到与VCC添加相反的一侧,也能迅速抑制VCC孔的形成。结果表明,两个膜小叶中的胆固醇均有助于VCC孔的形成,并且相对于孔形成速率,任一个小叶都可充当动力学瓶颈。

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