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Distinct Constrictive Processes Separated in Time and Space Divide Caulobacter Inner and Outer Membranes

机译:不同的收缩过程在时间和空间上分开将杆状细菌的内膜和外膜分开

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摘要

Cryoelectron microscope tomography (cryoEM) and a fluorescence loss in photobleaching (FLIP) assay were used to characterize progression of the terminal stages of Caulobacter crescentus cell division. Tomographic cryoEM images of the cell division site show separate constrictive processes closing first the inner membrane (IM) and then the outer membrane (OM) in a manner distinctly different from that of septum-forming bacteria. FLIP experiments had previously shown cytoplasmic compartmentalization (when cytoplasmic proteins can no longer diffuse between the two nascent progeny cell compartments) occurring 18 min before daughter cell separation in a 135-min cell cycle so the two constrictive processes are separated in both time and space. In the very latest stages of both IM and OM constriction, short membrane tether structures are observed. The smallest observed prefission tethers were 60 nm in diameter for both the inner and outer membranes. Here, we also used FLIP experiments to show that both membrane-bound and periplasmic fluorescent proteins diffuse freely through the FtsZ ring during most of the constriction procession.
机译:使用低温电子显微镜断层扫描(cryoEM)和光漂白(FLIP)分析中的荧光损失来表征新月形杆菌细胞分裂末期的进程。细胞分裂部位的断层成像cryoEM图像显示了单独的收缩过程,该过程首先以与形成隔膜的细菌不同的方式关闭内膜(IM),然后关闭外膜(OM)。 FLIP实验先前显示了在135分钟的细胞周期中子细胞分离之前18分钟发生的细胞质区室化(当细胞质蛋白不再能在两个新生后代细胞室之间扩散)时,这两个收缩过程在时间和空间上是分开的。在IM和OM收缩的最新阶段,观察到短膜系链结构。对于内膜和外膜,观察到的最小裂变系链的直径均为60 nm。在这里,我们还使用FLIP实验来表明膜结合和周质荧光蛋白在大多数收缩过程中都通过FtsZ环自由扩散。

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