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Progressive sheet-to-tubule transformation is a general mechanism for endoplasmic reticulum partitioning in dividing mammalian cells

机译:渐进的片状到小管转化是内质网在分裂哺乳动物细胞中分配的一般机制

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摘要

The endoplasmic reticulum (ER) is both structurally and functionally complex, consisting of a dynamic network of interconnected sheets and tubules. To achieve a more comprehensive view of ER organization in interphase and mitotic cells and to address a discrepancy in the field (i.e., whether ER sheets persist, or are transformed to tubules, during mitosis), we analyzed the ER in four different mammalian cell lines using live-cell imaging, high-resolution electron microscopy, and three dimensional electron microscopy. In interphase cells, we found great variation in network organization and sheet structures among different cell lines. In mitotic cells, we show that the ER undergoes both spatial reorganization and structural transformation of sheets toward more fenestrated and tubular forms. However, the extent of spatial reorganization and sheet-to-tubule transformation varies among cell lines. Fenestration and tubulation of the ER correlates with a reduced number of membrane-bound ribosomes.
机译:内质网(ER)在结构和功能上都很复杂,由相互连接的薄片和小管组成的动态网络组成。为了更全面地了解间质细胞和有丝分裂细胞中的ER组织,并解决该领域的差异(即,在有丝分裂期间ER片是否持续存在或转化为细管),我们分析了四种不同哺乳动物细胞系中的ER使用活细胞成像,高分辨率电子显微镜和三维电子显微镜。在相间细胞中,我们发现不同细胞系之间网络组织和表结构的巨大差异。在有丝分裂细胞中,我们显示ER经历了空间重组和片材向更开窗和管状形式的结构转变。然而,空间重组和表皮至小管转化的程度在细胞系之间有所不同。内质网的开窗和输卵管化与膜结合核糖体的数量减少有关。

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