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Processive Movement of MreB-Associated Cell Wall Biosynthetic Complexes in Bacteria

机译:细菌中爆米纸相关细胞壁生物合成络合物的加工运动

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摘要

The peptidoglycan cell wall and the actin-like MreB cytoskeleton are major determinants of cell shape in rod-shaped bacteria. The prevailing model postulates that helical, membrane-associated MreB filaments organize elongation-specific peptidoglycan-synthesizing complexes along sidewalls. We used total internal reflection fluorescence microscopy to visualize the dynamic relation between MreB isoforms and cell wall synthesis in live Bacillus subtilis cells. During exponential growth, MreB proteins did not form helical structures. Instead, together with other morphogenetic factors, they assembled into discrete patches that moved processively along peripheral tracks perpendicular to the cell axis. Patch motility was largely powered by cell wall synthesis, and MreB polymers restricted diffusion of patch components in the membrane and oriented patch motion.
机译:肽聚糖细胞壁和肌动蛋白样细胞骨架MREB在杆状细菌细胞形状的主要决定因素。普遍的模型假设,螺旋形的,膜结合的长丝MREB组织伸长特异性沿着侧壁肽聚糖合成的复合物。我们使用全内反射荧光显微镜可视化在活的枯草芽孢杆菌细胞MREB同种型和细胞壁合成之间的动态关系。在指数增长,MREB蛋白质没有形成螺旋结构。取而代之的是,与其它形态发生因子一起,它们组装成沿外围磁道垂直于元件轴processively移动离散的贴剂。补丁运动在很大程度上是由细胞壁合成供电,并且MREB聚合物限制贴片元件的扩散在膜和面向贴片运动。

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