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Focus Issue on Membrane Trafficking: SCAMPs Highlight the Developing Cell Plate during Cytokinesis in Tobacco BY-2 Cells

机译:膜贩运的焦点问题:SCAMP突出显示烟草BY-2细胞胞质分裂过程中正在发育的细胞板

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摘要

We previously demonstrated that rice (Oryza sativa) SECRETORY CARRIER MEMBRANE PROTEIN1 (OsSCAMP1)-yellow fluorescent protein in transgenic tobacco (Nicotiana tabacum) Bright Yellow-2 cells locates to the plasma membrane and to motile punctate structures, which represent the trans-Golgi network/early endosome and are tubular-vesicular in nature. Here, we now show that SCAMPs are diverted to the cell plate during cytokinesis dividing Bright Yellow-2 cells. As cells progress from metaphase to cytokinesis, punctate OsSCAMP1-labeled structures begin to collect in the future division plane. Together with the internalized endosomal marker FM4-64, they then become incorporated into the cell plate as it forms and expands. This was confirmed by immunogold electron microscopy. We also monitored for the Golgi apparatus and the prevacuolar compartment (PVC)/multivesicular body. Golgi stacks tend to accumulate in the vicinity of the division plane, but the signals are clearly separate to the cell plate. The situation with the PVC (labeled by green fluorescent protein-BP-80) is not so clear. Punctate BP-80 signals are seen at the advancing periphery of the cell plate, which was confirmed by immunogold electron microscopy. Specific but weak labeling was observed in the cell plate, but no evidence for a fusion of the PVC/multivesicular body with the cell plate could be obtained. Our data, therefore, support the notion that cell plate formation is mainly a secretory process involving mass incorporation of domains of the trans-Golgi network/early endosome membrane. We regard the involvement of multivesicular late endosomes in this process to be equivocal.
机译:我们之前已经证明转基因烟草(Nicotiana tabacum)中的水稻(Oryza sativa)SECURTORY CARRIER膜蛋白1(OsSCAMP1)-黄色荧光蛋白亮黄色2细胞位于质膜和能动的点状结构,这代表了反高尔基网络/早期内体,本质上是管状小泡。在这里,我们现在显示SCAMPs在分裂明亮的Yellow-2细胞的胞质分裂过程中被转移到细胞板。随着细胞从中期发展到胞质分裂,点状OsSCAMP1标记的结构开始在未来的分裂平面中收集。然后,它们与内在的内体标记物FM4-64一起在细胞板形成和扩展时掺入细胞板。免疫金电子显微镜证实了这一点。我们还监测了高尔基体和前房室(PVC)/多囊体。高尔基体堆积倾向于在分裂平面附近积聚,但信号显然与细胞板分开。 PVC(用绿色荧光蛋白-BP-80标记)的情况还不清楚。在细胞板行进的边缘观察到点状BP-80信号,这已通过免疫金电子显微镜确认。在细胞板中观察到了特异性但较弱的标记,但是没有证据表明PVC /多囊泡体与细胞板融合。因此,我们的数据支持以下观点:细胞板的形成主要是分泌过程,涉及大量整合反式高尔基体网络/早期内体膜的结构域。我们认为多囊泡晚期内体在这个过程中的参与是模棱两可的。

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