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Release of content through mechano-sensitive gates in pressurized liposomes

机译:通过加压脂质体中的机械敏感门释放内容

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摘要

Mechano-sensitive channels are ubiquitous membrane proteins that activate in response to increasing tension in the lipid membrane. They facilitate a sudden, nonselective release of solutes and water that safeguards the integrity of the cell in hypo- or hyper-osmotic shock conditions. We have simulated the rapid release of content from a pressurized liposome through a particular mechano-sensitive protein channel, MscL, embedded in the liposomal membrane. We show that a single channel is able to relax the liposome, stressed to the point of bursting, in a matter of microseconds. We map the full activation–deactivation cycle of MscL in near-atomic detail and are able to quantify the rapid decrease in liposomal stress as a result of channel activation. This provides a computational tool that opens the way to contribute to the rational design of functional nano-containers.
机译:机械敏感通道是普遍存在的膜蛋白,其响应于脂质膜中张力的增加而激活。它们促进溶质和水的突然非选择性释放,从而在低渗或高渗休克条件下保护细胞的完整性。我们已经模拟了通过嵌入脂质体膜的特定机械敏感蛋白通道MscL从加压脂质体中快速释放内容的方法。我们表明,单个通道能够在几微秒内松弛脂质体,使其达到破裂点。我们在近原子细节中绘制了MscL的完整激活-失活周期图,并且能够量化由于通道激活而导致的脂质体应力的快速下降。这提供了一种计算工具,为有助于功能性纳米容器的合理设计开辟了道路。

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