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首页> 外文期刊>Journal of the Royal Society Interface >Mechanosensitive channels and bacterial cell wall integrity: does life end with a bang or a whimper?
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Mechanosensitive channels and bacterial cell wall integrity: does life end with a bang or a whimper?

机译:机械敏感通道和细菌细胞壁完整性:生命会因砰砰声或呜咽声而结束吗?

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摘要

Mechanogated channels are fundamental components of bacterial cells that enable retention of physical integrity during extreme increases in cell turgor. Optical tweezers combined with microfluidics have been used to study the fate of individual Escherichia coli cells lacking such channels when subjected to a bursting stress caused by increased turgor. Fluorescence-activated cell sorting and electron microscopy complement these studies. These analyses show that lysis occurs with a high probability, but the precise path differs between individual cells. By monitoring the loss of cytoplasmic green fluorescent protein, we have determined that some cells release this protein but remain phase dark (granular) consistent with the retention of the majority of large proteins. By contrast, most cells suffer cataclysmic wall failure leading to loss of granularity but with the retention of DNA and overall cell shape (protein-depleted ghosts). The time span of these events induced by hypo-osmotic shock varies but is of the order of milliseconds. The data are interpreted in terms of the timing of mechanosensitive channel gating relative to osmotically induced water influx.
机译:机械化通道是细菌细胞的基本组成部分,可在细胞膨胀急剧增加的过程中保持物理完整性。光学镊子与微流控技术相结合已被用于研究缺少这种通道的单个大肠杆菌细胞在遭受由膨胀引起的破裂压力时的命运。荧光激活细胞分选和电子显微镜补充了这些研究。这些分析表明,发生裂解的可能性很高,但是各个细胞之间的精确路径有所不同。通过监测细胞质绿色荧光蛋白的丢失,我们已经确定一些细胞释放该蛋白,但保持相暗(颗粒状),与大多数大蛋白的保留相一致。相比之下,大多数细胞遭受灾难性的壁破坏,导致粒度损失,但保留了DNA和整个细胞形状(蛋白质耗尽的重影)。由低渗性休克引起的这些事件的时间跨度有所不同,但大约为毫秒。数据是根据机械感应通道门控相对于渗透诱导的水涌的时间来解释的。

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