Klumperman J, Schweizer A, Clausen H, Tang B L, Hong W, Oorschot V, Hauri H P
Department of Cell Biology, School of Medicine, Utrecht University, The Netherlands.
J Cell Sci. 1998 Nov;111 ( Pt 22):3411-25. doi: 10.1242/jcs.111.22.3411.
To establish recycling routes in the early secretory pathway we have studied the recycling of the ER-Golgi intermediate compartment (ERGIC) marker ERGIC-53 in HepG2 cells. Immunofluorescence microscopy showed progressive concentration of ERGIC-53 in the Golgi area at 15 degreesC. Upon rewarming to 37 degreesC ERGIC-53 redistributed into the cell periphery often via tubular processes that largely excluded anterograde transported albumin. Immunogold labeling of cells cultured at 37 degreesC revealed ERGIC-53 predominantly in characteristic beta-COP-positive tubulo-vesicular clusters both near the Golgi apparatus and in the cell periphery. Concentration of ERGIC-53 at 15 degreesC resulted from both accumulation of ERGIC-53 in the ERGIC and movement of ERGIC membranes closer to the Golgi apparatus. Upon rewarming to 37 degreesC the labeling of ERGIC-53 in the ERGIC rapidly returned to normal levels whereas ERGIC-53's labeling in the cis-Golgi was unchanged. Temperature manipulations had no effect on the average number of ERGIC-53 clusters. Density gradient centrifugation indicated that the surplus ERGIC-53 accumulating in the ERGIC at 15 degreesC was rapidly transported to the ER upon rewarming. These results suggest that the ERGIC is a dynamic membrane system composed of a constant average number of clusters and that the major recycling pathway of ERGIC-53 bypasses the Golgi apparatus.
为了在早期分泌途径中建立循环途径,我们研究了HepG2细胞中内质网-高尔基体中间区室(ERGIC)标志物ERGIC-53的循环。免疫荧光显微镜显示,在15℃时,ERGIC-53在高尔基体区域逐渐浓缩。当重新升温至37℃时,ERGIC-53通常通过管状结构重新分布到细胞周边,这些管状结构在很大程度上排除了顺向转运的白蛋白。对在37℃培养的细胞进行免疫金标记显示,ERGIC-53主要存在于高尔基体附近和细胞周边的特征性β-COP阳性管状小泡簇中。15℃时ERGIC-53的浓缩是由于ERGIC-53在ERGIC中的积累以及ERGIC膜向高尔基体的移动。重新升温至37℃时,ERGIC中ERGIC-53的标记迅速恢复到正常水平,而顺式高尔基体中ERGIC-53的标记没有变化。温度操作对ERGIC-53簇的平均数量没有影响。密度梯度离心表明,在15℃时ERGIC中积累的多余ERGIC-53在重新升温后迅速转运到内质网。这些结果表明,ERGIC是一个动态膜系统,由恒定平均数量的簇组成,并且ERGIC-53的主要循环途径绕过了高尔基体。