Vasudevan C, Han W, Tan Y, Nie Y, Li D, Shome K, Watkins S C, Levitan E S, Romero G
Department of Pharmacology, University of Pittsburgh, Pittsburgh, PA 15261, USA.
J Cell Sci. 1998 May;111 ( Pt 9):1277-85. doi: 10.1242/jcs.111.9.1277.
ADP-ribosylation factors (ARF) are small G proteins that play key roles in vesicular transport processes. We have studied the distribution of ARF1 in live cells using chimeras of ARF1 mutants (wild type (wt) ARF1; Q71L-ARF1 (reduced GTPase); T31N (low affinity for GTP); and (Delta)Nwt (deletion of amino acids 2-18)) with green fluorescent protein (GFP). Confocal microscopy studies showed that the wt and Q71L proteins were localized in the Golgi and cytoplasm. The (Delta)Nwt and the T31N mutants were exclusively cytoplasmic. The behavior of the wt and Q71L proteins was studied in detail. About 15% of wt-ARF1-GFP was bound to the Golgi. Bound wt-ARF1-GFP dissociated rapidly after addition of Brefeldin A (BFA). This process did not appear to be a consequence of BFA-induced disappearance of the Golgi. Photobleaching recovery showed that essentially all the ARF-GFP was mobile, although it diffused very slowly. In contrast, about 40-50% of the Q71L mutant was found in the Golgi, and its rate of dissociation in the presence of BFA was slow and biphasic. Q71L-ARF1-GFP diffused more slowly than the wt. We conclude that ARF1 proteins exist in a dynamic equilibrium between Golgi-bound and cytosolic pools, and that the translocation of ARF in live cells requires the hydrolysis of GTP by the Golgi-bound protein.
ADP-核糖基化因子(ARF)是一类小G蛋白,在囊泡运输过程中起关键作用。我们利用ARF1突变体(野生型(wt)ARF1;Q71L-ARF1(GTP酶活性降低);T31N(对GTP亲和力低);以及(Delta)Nwt(缺失氨基酸2-18))与绿色荧光蛋白(GFP)的嵌合体,研究了ARF1在活细胞中的分布。共聚焦显微镜研究表明,wt和Q71L蛋白定位于高尔基体和细胞质中。(Delta)Nwt和T31N突变体仅存在于细胞质中。对wt和Q71L蛋白的行为进行了详细研究。约15%的wt-ARF1-GFP与高尔基体结合。加入布雷菲德菌素A(BFA)后,结合的wt-ARF1-GFP迅速解离。这个过程似乎不是BFA诱导高尔基体消失的结果。光漂白恢复实验表明,基本上所有的ARF-GFP都是可移动的,尽管其扩散非常缓慢。相比之下,约40-50%的Q71L突变体存在于高尔基体中,其在BFA存在下的解离速度缓慢且呈双相性。Q71L-ARF1-GFP的扩散速度比wt慢。我们得出结论,ARF1蛋白在高尔基体结合池和胞质池之间存在动态平衡,并且活细胞中ARF的转运需要高尔基体结合蛋白对GTP的水解。