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The Escherichia coli baby cell column: a novel cell synchronization method provides new insight into the bacterial cell cycle

机译:大肠杆菌婴儿细胞专栏:一种新颖的细胞同步方法为细菌细胞周期提供了新见解

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We describe a new method for synchronizing bacterial cells. Cells that have transiently expressed an inducible mutant 'sticky' flagellin are adhered to a volume of glass beads suspended in a chromatography column though which growth medium is pumped. Following repression of flagellin synthesis, newborn cells are eluted from the column in large quantities exceeding that of current baby machine techniques by approximately 10-fold. Eluted cultures of 'baby cells' are highly synchronous as determined by analysis of DNA replication, cell division and other events, over time after elution from the column. We also show that use of 'minutes after elution' as a time metric permits much greater temporal resolution among sequential chromosomal events than the commonly used metric of cell size (length). The former approach reveals the existence of transient intermediate stages that are missed by the latter approach. This finding has two important implications. First, at a practical level, the baby cell column is a particularly powerful method for temporal analysis. Second, at a conceptual level, replication-related events are more tightly linked to cell birth (i.e. cell division) than to absolute cell mass.
机译:我们描述了一种同步细菌细胞的新方法。瞬时表达可诱导突变型“粘性”鞭毛蛋白的细胞粘附于悬浮在色谱柱中的一定体积的玻璃珠上,通过该玻璃珠泵浦生长培养基。抑制鞭毛蛋白合成后,新生细胞从柱中洗脱的量比当前婴儿机械技术的洗脱量高出约10倍。从柱上洗脱后,随着时间的流逝,“婴儿细胞”的洗脱培养物高度同步,这是通过分析DNA复制,细胞分裂和其他事件确定的。我们还表明,使用“洗脱后的分钟数”作为时间量度,与常规的细胞大小(长度)量度相比,在连续的染色体事件中允许更大的时间分辨率。前一种方法揭示了后一种方法遗漏的过渡中间阶段的存在。这一发现有两个重要含义。首先,从实用的角度讲,婴儿细胞柱是一种特别强大的时间分析方法。其次,从概念上讲,与复制有关的事件与细胞的诞生(即细胞分裂)比与绝对细胞质量更紧密地联系在一起。

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