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Rapid, Endoplasmic Reticulum-independent Diffusion of the Mitotic Golgi Haze

机译:有丝分裂高尔基雾的快速,内质网独立扩散。

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Early in mitosis, the mammalian Golgi apparatus disassembles, and fluorescence microscopy reveals Golgi clusters and an extensive, nonresolvable haze that either represents scattered vesicles or a merged endoplasmic reticulum (ER)-Golgi compartment. To help decide between these alternatives, we have carried out a combined microscopic and pharmacological analysis, by using a BS-C-1 cell line stably coexpressing ER and Golgi markers. Video fluorescence microscopy showed that these two organelles were morphologically distinguishable at all stages of mitosis, and photobleaching experiments showed that diffusion of the Golgi marker was unaffected by the presence of the ER. Fragmentation of the ER by using filipin III completely blocked diffusion of the ER marker but had no effect on the Golgi marker, unless it was first relocated to the ER by using brefeldin A. The Golgi haze was also studied using BODIPY ceramide. Its diffusion was slower in mitotic Golgi than in mitotic ER, but similar to that of a Golgi enzyme marker in the mitotic Golgi haze or in Golgi vesicles generated by ilimaquinone. Together, these results support the idea that the Golgi and the ER remain separate during mitosis and strongly suggest that Golgi markers move by vesicle diffusion, as opposed to lateral diffusion in continuous membranes.
机译:在有丝分裂的早期,哺乳动物的高尔基体分解,荧光显微镜显示高尔基体簇和广泛的,不可分辨的雾度,代表散布的囊泡或合并的内质网(ER)-高尔基体。为了帮助您在这些替代方案之间做出决定,我们使用稳定共表达ER和Golgi标记的BS-C-1细胞系进行了显微镜和药理学分析的组合。视频荧光显微镜显示,这两个细胞器在有丝分裂的所有阶段在形态上都是可区分的,光漂白实验表明,高尔基标记的扩散不受ER的存在的影响。除非首先使用布雷菲德菌素A将其重新定位到ER上,否则使用菲利普林III裂解ER会完全阻止ER标记的扩散,但对高尔基体标记没有影响。还使用BODIPY神经酰胺研究了高尔基雾度。其在有丝分裂的高尔基体中的扩散比有丝分裂的ER中的慢,但与有丝分裂的高尔基体雾度或由伊马醌产生的高尔基体囊泡中的高尔基酶标记相似。在一起,这些结果支持高尔基体和内质网在有丝分裂期间保持分离的想法,并强烈暗示高尔基体标记通过囊泡扩散而移动,而不是在连续膜中横向扩散。

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