Department of Applied Genetics and Cell Biology, University of Natural Resources and Applied Life Sciences, Vienna, Muthgasse 18, 1190 Vienna, Austria.
Traffic. 2010 Nov;11(11):1429-44. doi: 10.1111/j.1600-0854.2010.01106.x. Epub 2010 Aug 18.
Herein, we report the stepwise transport of multiple plant Golgi membrane markers during disassembly of the Golgi apparatus in tobacco leaf epidermal cells in response to the induced expression of the GTP-locked Sar1p or Brefeldin A (BFA), and reassembly on BFA washout. The distribution of fluorescent Golgi-resident N-glycan processing enzymes and matrix proteins (golgins) with specific cis-trans-Golgi sub-locations was followed by confocal microscopy during disassembly and reassembly. The first event during Golgi disassembly was the loss of trans-Golgi enzymes and golgins from Golgi membranes, followed by a sequential redistribution of medial and cis-Golgi enzymes into the endoplasmic reticulum (ER), whilst golgins were relocated to the ER or cytoplasm. This event was confirmed by fractionation and immuno-blotting. The sequential redistribution of Golgi components in a trans-cis sequence may highlight a novel retrograde trafficking pathway between the trans-Golgi and the ER in plants. Release of Golgi markers from the ER upon BFA washout occurred in the opposite sequence, with cis-matrix proteins labelling Golgi-like structures before cis/medial enzymes. Trans-enzyme location was preceded by trans-matrix proteins being recruited back to Golgi membranes. Our results show that Golgi disassembly and reassembly occur in a highly ordered fashion in plants.
在此,我们报告了在烟草叶表皮细胞中,高尔基体装置解体时,多种植物高尔基体膜标记物的逐步转运过程,该过程响应于Sar1p 或布雷菲德菌素 A (BFA) 的诱导表达,以及 BFA 洗脱后的再组装。通过共焦显微镜,在解体和重组过程中,我们跟踪了荧光高尔基体驻留的 N-聚糖加工酶和具有特定顺式-反式高尔基体亚区位置的基质蛋白(高尔基蛋白)的分布。高尔基体解体的第一个事件是反式高尔基体酶和高尔基蛋白从高尔基体膜中丢失,随后顺式和中间高尔基体酶依次重新分布到内质网(ER)中,而高尔基蛋白则重新定位到 ER 或细胞质中。这一事件通过分级分离和免疫印迹得到了证实。高尔基体成分在顺式-反式序列中的顺序再分布可能突出了植物中反式高尔基体和 ER 之间的一种新的逆行运输途径。BFA 洗脱后从 ER 释放的高尔基体标记物的释放顺序相反,顺式基质蛋白在顺式/中间酶之前标记出类高尔基体结构。反式酶的定位之前,反式基质蛋白被重新募集到高尔基体膜上。我们的结果表明,高尔基体的解体和重组在植物中是以高度有序的方式发生的。