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The MscS and MscL Families of Mechanosensitive Channels Act as Microbial Emergency Release Valves

机译:机械敏感通道的MscS和MscL系列充当微生物紧急释放阀

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Single-celled organisms must survive exposure to environmental extremes. Perhaps one of the most variable and potentially life-threatening changes that can occur is that of a rapid and acute decrease in external osmolarity. This easily translates into several atmospheres of additional pressure that can build up within the cell. Without a protective mechanism against such pressures, the cell will lyse. Hence, most microbes appear to possess members of one or both families of bacterial mechanosensitive channels, MscS and MscL, which can act as biological emergency release valves that allow cytoplasmic solutes to be jettisoned rapidly from the cell. While this is undoubtedly a function of these proteins, the discovery of the presence of MscS homologues in plant organelles and MscL in fungus and mycoplasma genomes may complicate this simplistic interpretation of the physiology underlying these proteins. Here we compare and contrast these two mechanosensitive channel families, discuss their potential physiological roles, and review some of the most relevant data that underlie the current models for their structure and function.
机译:单细胞生物必须在极端环境下生存。可能发生的变化最大且可能威胁生命的变化之一是外部渗透压的急剧急剧下降。这很容易转化为几个大气压,这些大气压会在电池内累积。如果没有针对此类压力的保护机制,细胞将裂解。因此,大多数微生物似乎拥有细菌机械敏感通道MscS和MscL的一个或两个家族的成员,它们可以充当生物紧急释放阀,使细胞质溶质从细胞中快速排出。尽管这无疑是这些蛋白质的功能,但发现植物细胞器中MscS同源物以及真菌和支原体基因组中MscL的存在可能会使这种蛋白质基础生理学的这种简单解释变得复杂。在这里,我们比较和对比这两个机械敏感通道家族,讨论它们的潜在生理作用,并回顾一些最相关的数据,这些数据是当前其结构和功能模型的基础。

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