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The mitotic spindle mediates inheritance of the Golgi ribbon structure

机译:有丝分裂纺锤体介导高尔基带结构的遗传。

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摘要

The mammalian Golgi ribbon disassembles during mitosis and reforms in both daughter cells after division. Mitotic Golgi membranes concentrate around the spindle poles, suggesting that the spindle may control Golgi partitioning. To test this, cells were induced to divide asymmetrically with the entire spindle segregated into only one daughter cell. A ribbon reforms in the nucleated karyoplasts, whereas the Golgi stacks in the cytoplasts are scattered. However, the scattered Golgi stacks are polarized and transport cargo. Microinjection of Golgi extract together with tubulin or incorporation of spindle materials rescues Golgi ribbon formation. Therefore, the factors required for postmitotic Golgi ribbon assembly are transferred by the spindle, but the constituents of functional stacks are partitioned independently, suggesting that Golgi inheritance is regulated by two distinct mechanisms.
机译:哺乳动物的高尔基体带在有丝分裂期间解体,分裂后两个子细胞均重新形成。有丝分裂的高尔基体膜集中在纺锤体的两极,这表明纺锤体可以控制高尔基体的分配。为了测试这一点,诱导细胞不对称分裂,将整个纺锤体分成一个子细胞。条带在核有核的质体中重新形成,而在细胞质中的高尔基体堆积是分散的。但是,分散的高尔基堆是极化的,可以运输货物。将高尔基提取物与微管蛋白一起显微注射或掺入纺锤体材料可挽救高尔基带的形成。因此,有丝分裂后高尔基体带装配所需的因素是由纺锤体转移的,但是功能堆栈的成分是独立分配的,这表明高尔基体的遗传受到两种不同机制的调控。

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  • 年度 2009
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  • 正文语种 {"code":"en","name":"English","id":9}
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