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Revealing the ultrastructure of the membrane pores of intact Serratia marcescens cells by atomic force microscopy

机译:通过原子力显微镜揭示完整的粘质沙雷氏菌细胞膜孔的超微结构

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摘要

This study aimed to characterize the surface ultrastructure of intact Serratia marcescens cells under physiological conditions. Topographic information of membrane pores of the cells was obtained by atomic force microscope (AFM). Three types of membrane pores (CH-1-Pore A, CH-1-Pore B and CH-1-Pore C) were observed and the spatial arrangements of membrane-spanning subunits in membranes were defined. High-resolution images revealed that the doughnut-shaped structures of CH-1-Pore A and CH-1-Pore B were composed of six-to-eight and four transmembrane subunits. The inverted teepee-shaped structure of CH-1-Pore C was segmented into two transmembrane subunits straddling a single funnel-like pore. This study, to the best of authors' knowledge, represents the first direct characterization of the surface ultrastructure of the membrane pores of Serratia marcescens CH-1 cells at the nanometer scale and offers new prospects of mapping membrane pores on intact prokaryotic cells.
机译:这项研究旨在表征生理条件下完整粘质沙雷氏菌细胞的表面超微结构。通过原子力显微镜(AFM)获得细胞膜孔的形貌信息。观察到三种类型的膜孔(CH-1-孔A,CH-1-孔B和CH-1-孔C),并定义了跨膜亚基在膜中的空间排列。高分辨率图像显示CH-1-Pore A和CH-1-Pore B的甜甜圈状结构由六到八个和四个跨膜亚单位组成。 CH-1-孔C的倒圆锥形圆锥形结构被分割成两个跨膜亚基,跨过单个漏斗状孔。据作者所知,这项研究代表了纳米级粘质沙雷氏菌CH-1细胞膜孔表面超微结构的首次直接表征,并为完整原核细胞上的膜孔作图提供了新的前景。

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