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Cell Wall Peptidoglycan Architecture In Bacillus Subtilis

机译:枯草芽孢杆菌中的细胞壁肽聚糖结构

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摘要

The bacterial cell wall is essential for viability and shape determination. Cell wall structural dynamics allowing growth and division, while maintaining integrity is a basic problem governing the life of bacteria. The polymer peptidoglycan is the main structural component for most bacteria and is made up of glycan strands that are cross-linked by peptide side chains. Despite study and speculation over many years, peptidoglycan architecture has remained largely elusive. Here, we show that the model rod-shaped bacterium Bacillus subtilis has glycan strands up to 5 μm, longer than the cell itself and 50 times longer than previously proposed. Atomic force microscopy revealed the glycan strands to be part of a peptidoglycan architecture allowing cell growth and division. The inner surface of the cell wall has a regular macrostructure with ≈50 nm-wide peptidoglycan cables [average 53 ± 12 nm (n = 91)] running basically across the short axis of the cell. Cross striations with an average periodicity of 25 ± 9 nm (n = 96) along each cable are also present. The fundamental cabling architecture is also maintained during septal development as part of cell division. We propose a coiled-coil model for peptidoglycan architecture encompassing our data and recent evidence concerning the biosynthetic machinery for this essential polymer.
机译:细菌细胞壁对于生存力和形状确定至关重要。细胞壁的结构动力学允许生长和分裂,同时保持完整性是控制细菌寿命的基本问题。聚合物肽聚糖是大多数细菌的主要结构成分,由通过肽侧链交联的聚糖链组成。尽管多年来进行了研究和推测,但肽聚糖的结构仍然难以捉摸。在这里,我们表明模型杆状细菌枯草芽孢杆菌具有高达5μm的聚糖链,比细胞本身更长,比以前提出的更长50倍。原子力显微镜显示,聚糖链是肽聚糖结构的一部分,可以使细胞生长和分裂。细胞壁的内表面具有规则的宏观结构,其中约50 nm宽的肽聚糖电缆[平均53±12 nm(n = 91)]基本上横穿细胞的短轴。沿每条电缆的平均平均周期为25±9 nm(n = 96)。在隔室发育过程中,基本的布线架构也得到了维护,这是细胞分裂的一部分。我们提出了肽聚糖结构的螺旋线圈模型,该模型包含了我们的数据以及有关这种基本聚合物的生物合成机制的最新证据。

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