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Stacked endoplasmic reticulum sheets are connected by helicoidal membrane motifs

机译:堆叠的内质网片通过螺旋膜基序连接

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摘要

The endoplasmic reticulum (ER) often forms stacked membrane sheets, an arrangement that is likely required to accommodate a maximum of membrane-bound polysomes for secretory protein synthesis. How sheets are stacked is unknown. Here, we used novel staining and automated ultra-thin sectioning electron microscopy methods to analyze stacked ER sheets in neuronal cells and secretory salivary gland cells of mice. Our results show that stacked ER sheets form a continuous membrane system in which the sheets are connected by twisted membrane surfaces with helical edges of left- or right-handedness. The three-dimensional structure of tightly stacked ER sheets resembles a parking garage, in which the different levels are connected by helicoidal ramps. A theoretical model explains the experimental observations and indicates that the structure corresponds to a minimum of elastic energy of sheet edges and surfaces. The structure allows the dense packing of ER sheets in the restricted space of a cell.
机译:内质网(ER)通常形成堆叠的膜片,这可能是为容纳分泌蛋白合成所需的最大膜结合多核糖体所需要的一种布置。纸张如何堆叠是未知的。在这里,我们使用新颖的染色和自动超薄切片电子显微镜方法来分析小鼠神经元细胞和唾液腺分泌细胞中的堆叠ER片。我们的结果表明,堆叠的ER片材形成了连续的膜系统,其中片材通过带有左旋或右旋螺旋边缘的扭曲膜表面连接。紧密堆叠的ER片材的三维结构类似于一个停车库,其中不同的高度通过螺旋坡道相连。理论模型解释了实验观察结果,并表明该结构对应于片材边缘和表面的最小弹性能。该结构允许在电池的受限空间中密集堆放ER薄片。

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