Marchand Sophie, Devillers-Thiéry Anne, Pons Stéphanie, Changeux Jean-Pierre, Cartaud Jean
Biologie Cellulaire des Membranes, Département de Biologie Cellulaire, Institut Jacques Monod, Centre National de la Recherche Scientifique, Universités Paris 6 et 7, 75251, Paris Cedex 05, France.
J Neurosci. 2002 Oct 15;22(20):8891-901. doi: 10.1523/JNEUROSCI.22-20-08891.2002.
The 43 kDa receptor-associated protein rapsyn is a myristoylated peripheral protein that plays a central role in nicotinic acetylcholine receptor (AChR) clustering at the neuromuscular junction. In a previous study, we demonstrated that rapsyn is specifically cotransported with AChR via post-Golgi vesicles targeted to the innervated surface of the Torpedo electrocyte (Marchand et al., 2000). In the present study, to further elucidate the mechanisms for sorting and assembly of postsynaptic proteins, we analyzed the dynamics of the intracellular trafficking of fluorescently labeled rapsyn in the transient-expressing COS-7 cell system. Our approach was based on fluorescence, time-lapse imaging, and immunoelectron microscopies, as well as biochemical analyses. We report that newly synthesized rapsyn associates with the trans-Golgi network compartment and traffics via vesiculotubular organelles toward the cell surface of COS-7 cells. The targeting of rapsyn organelles appeared to be mediated by a microtubule-dependent transport. Using cotransfection experiments of rapsyn and AChR, we observed that these two molecules codistribute within distal exocytic routes and at the plasma membrane. Triton X-100 extraction on ice and flotation gradient centrifugation demonstrated that rapsyn and AChR are recovered in low-density fractions enriched in two rafts markers: caveolin-1 and flotillin-1. We propose that sorting and targeting of these two companion molecules are mediated by association with cholesterol-sphingolipid-enriched raft microdomains. Collectively, these data highlight rapsyn as an itinerant vesicular protein that may play a dynamic role in the sorting and targeting of its companion receptor to the postsynaptic membrane. These data also raise the interesting hypothesis of the participation of the raft machinery in the targeting of signaling molecules to synaptic sites.
43 kDa的受体相关蛋白rapsyn是一种肉豆蔻酰化的外周蛋白,在神经肌肉接头处烟碱型乙酰胆碱受体(AChR)的聚集过程中发挥核心作用。在先前的一项研究中,我们证明rapsyn通过靶向电鳐电细胞受神经支配表面的高尔基体后囊泡与AChR特异性共转运(Marchand等人,2000年)。在本研究中,为了进一步阐明突触后蛋白的分选和组装机制,我们在瞬时表达的COS-7细胞系统中分析了荧光标记的rapsyn的细胞内运输动力学。我们的方法基于荧光、延时成像、免疫电子显微镜以及生化分析。我们报告称,新合成的rapsyn与反式高尔基体网络区室结合,并通过囊泡管状细胞器向COS-7细胞的细胞表面运输。rapsyn细胞器的靶向似乎由微管依赖性运输介导。通过rapsyn和AChR的共转染实验,我们观察到这两种分子在远端胞吐途径和质膜内共分布。在冰上用Triton X-100提取并进行浮选梯度离心表明,rapsyn和AChR在富含两种脂筏标记物(小窝蛋白-1和浮舰蛋白-1)的低密度组分中被回收。我们提出,这两种伴侣分子的分选和靶向由与富含胆固醇-鞘脂的脂筏微区结合介导。总体而言,这些数据突出了rapsyn作为一种巡回囊泡蛋白,可能在其伴侣受体分选和靶向至突触后膜过程中发挥动态作用。这些数据还提出了脂筏机制参与信号分子靶向至突触位点的有趣假说。