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Assembly and disassembly of the Golgi complex: two processes arranged in a cis-trans direction

机译:高尔基体的组装和拆卸:沿顺反方向排列的两个过程

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摘要

We have studied the disassembly and assembly of two morphologically and functionally distinct parts of the Golgi complex, the cis/middle and trans cisterna/trans network compartments. For this purpose we have followed the redistribution of three cis/middle- (GMPc-1, GMPc-2, MG 160) and two trans- (GMPt-1 and GMPt-2) Golgi membrane proteins during and after treatment of normal rat kidney (NRK) cells with brefeldin A (BFA). BFA induced complete disassembly of the cis/middle- and trans- Golgi complex and translocation of GMPc and GMPt to the ER. Cells treated for short times (3 min) with BFA showed extensive disorganization of both cis/middle- and trans-Golgi complexes. However, complete disorganization of the trans part required much longer incubations with the drug. Upon removal of BFA the Golgi complex was reassembled by a process consisting of three steps: (a) exist of cis/middle proteins from the ER and their accumulation into vesicular structures scattered throughout the cytoplasm; (b) gradual relocation and accumulation of the trans proteins in the vesicles containing the cis/middle proteins; and (c) assembly of the cisternae, and reconstruction of the Golgi complex within an area located in the vicinity of the centrosome from which the ER was excluded. Reconstruction of the cis/middle-Golgi complex occurred under temperature conditions inhibitory of the reorganization of the trans- Golgi complex, and was dependent on microtubules. Reconstruction of the trans-Golgi complex, disrupted with nocodazole after selective fusion of the cis/middle-Golgi complex with the ER, occurred after the release of cis/middle-Golgi proteins from the ER and the assembly of the cis/middle cisternae.
机译:我们研究了高尔基复合体的两个在形态和功能上截然不同的部分(顺式/中间和反式水箱/反式网络隔室)的拆卸和组装。为此,我们跟踪了正常大鼠肾脏在治疗过程中和治疗后,三种顺式/中间(GMPc-1,GMPc-2,MG 160)和两种反式(GMPt-1和GMPt-2)高尔基膜蛋白的重新分布(NRK)细胞与布雷菲德菌素A(BFA)。 BFA诱导顺式/中间和反式高尔基复合体完全分解,并使GMPc和GMPt易位至ER。用BFA短时间(3分钟)处理的细胞显示出顺式/中间式和反式-高尔基复合体的广泛紊乱。但是,反式部分的完全混乱需要与药物的孵育时间更长。去除BFA后,高尔基体复合物通过三个步骤重新组装:(a)来自ER的顺式/中间蛋白存在并且它们积累到分散在整个细胞质中的囊泡结构中; (b)反式蛋白质在含有顺式/中间蛋白质的囊泡中的逐渐迁移和积累; (c)水箱的组装,以及在中心体附近排除ER的区域内高尔基复合体的重建。顺式/中间-高尔基体复合物的重建在抑制反式-高尔基体的重组的温度条件下发生,并且依赖于微管。顺式/中间高尔基体蛋白与ER选择性融合后,顺式/中间-高尔基体蛋白与ER选择性融合后,被Nocodazole破坏的反式高尔基复合体的重建发生在顺式/中间-高尔基体的组装过程中。

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