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The Rate of Osmotic Downshock Determines the Survival Probability of Bacterial Mechanosensitive Channel Mutants

机译:渗透冲击的速率决定了细菌机械敏感通道突变体的存活概率

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摘要

Mechanosensitive (MS) channels allow cells to sense and respond to environmental changes. In bacteria, these channels are believed to protect against an osmotic shock. The physiological function of these channels has been characterized primarily by a standardized assay, where aliquots of batch-cultured cells are rapidly pipetted into a hypotonic medium. Under this method, it has been inferred many types of MS channels (MscS homologs in Escherichia coli) demonstrate limited effectiveness against shock, typically rescuing less than 10% of the cells when expressed at native levels. We introduce a single-cell-based assay which allows us to control how fast the osmolarity changes, over time scales ranging from a fraction of a second to several minutes. We find that the protection provided by MS channels depends strongly on the rate of osmotic change, revealing that, under a slow enough osmotic drop, MscS homologs can lead to survival rates comparable to those found in wild-type strains. Further, after the osmotic downshift, we observe multiple death phenotypes, which are inconsistent with the prevailing paradigm of how cells lyse. Both of these findings require a reevaluation of our basic understanding of the physiology of MS channels.
机译:机械敏感(MS)通道可让细胞感应并响应环境变化。在细菌中,这些通道被认为可以防止渗透压。这些通道的生理功能主要通过标准化测定来表征,其中将分批培养细胞的等分试样迅速移液到低渗培养基中。在这种方法下,已经推断出许多类型的MS通道(大肠杆菌中的MscS同源物)显示出有限的抗休克功效,当以天然水平表达时,通常可拯救少于10%的细胞。我们介绍了一种基于单细胞的测定法,它使我们能够控制渗透压的变化速度,时间范围从几分之一秒到几分钟不等。我们发现,MS通道提供的保护作用在很大程度上取决于渗透变化的速率,这表明,在足够缓慢的渗透下降下,MscS同源物可以导致存活率与野生型菌株相当。此外,在渗透率下降后,我们观察到多种死亡表型,这与细胞裂解的流行范例不一致。这两个发现都需要重新评估我们对MS通道生理学的基本理解。

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