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In vitro high-resolution structural dynamics of single germinating bacterial spores

机译:单个发芽细菌孢子的体外高分辨率结构动力学

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Although significant progress has been achieved in understanding the genetic and biochemical bases of the spore germination process, the structural basis for breaking the dormant spore state remains poorly understood. We have used atomic force microscopy (AFM) to probe the high-resolution structural dynamics of single Bacillus atrophaeus spores germinating under native conditions. Here, we show that AFM can reveal previously unrecognized germination-induced alterations in spore coat architecture and topology as well as the disassembly of outer spore coat rodlet structures. These results and previous studies in other microorganisms suggest that the spore coat rodlets are structurally similar to amyloid fibrils. AFM analysis of the nascent surface of the emerging germ cell revealed a porous network of peptidoglycan fibers. The results are consistent with a honeycomb model structure for synthetic peptidoglycan oligomers determined by NMR. AFM is a promising experimental tool for investigating the morphogenesis of spore germination and cell wall peptidoglycan structure.
机译:尽管在理解孢子萌发过程的遗传和生化基础方面已取得重大进展,但打破休眠孢子状态的结构基础仍然知之甚少。我们已经使用原子力显微镜(AFM)来探测在自然条件下萌发的单个萎缩芽孢杆菌孢子的高分辨率结构动力学。在这里,我们表明AFM可以揭示以前无法识别的萌芽诱导的孢子外皮结构和拓扑结构变化以及外孢子外皮小杆结构的拆卸。这些结果和先前在其他微生物中的研究表明,孢子包膜小棒在结构上与淀粉样蛋白原纤维相似。新兴生殖细胞新生表面的原子力显微镜分析揭示了肽聚糖纤维的多孔网络。结果与通过NMR确定的合成肽聚糖低聚物的蜂窝模型结构一致。原子力显微镜是一种有前途的实验工具,用于调查孢子萌发和细胞壁肽聚糖结构的形态。

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