Misawa Hidemi, Fujigaya Hirofumi, Nishimura Takashi, Moriwaki Yasuhiro, Okuda Takashi, Kawashima Koichiro, Nakata Kazuko, Ruggiero Alicia M, Blakely Randy D, Nakatsu Fubito, Ohno Hiroshi
Department of Pharmacology, Kyoritsu University of Pharmacy, Tokyo 105-8512, Japan.
Eur J Neurosci. 2008 Jun;27(12):3109-17. doi: 10.1111/j.1460-9568.2008.06268.x. Epub 2008 Jun 1.
The high-affinity choline transporter (CHT) is expressed in cholinergic neurons and efficiently transported to axon terminals where it controls the rate-limiting step in acetylcholine synthesis. Recent studies have shown that the majority of CHT is unexpectedly localized on synaptic vesicles (SV) rather than the presynaptic plasma membrane, establishing vesicular CHT trafficking as a basis for activity-dependent CHT regulation. Here, we analyse the intracellular distribution of CHT in the adaptor protein-3 (AP-3)-deficient mouse model mocha. In the mocha mouse, granular structures in cell bodies are intensely labelled with CHT antibody, indicating possible deficits in CHT trafficking from the cell body to the axon terminal. Western blot analyses reveal that CHT on SV in mocha mice is decreased by 30% compared with wild-type mice. However, no significant difference in synaptosomal choline uptake activity is detected, consistent with the existence of a large reservoir pool for CHT. To further characterize CHT trafficking, we established a PC12D-CHT cell line. In this line, CHT is found associated with a subpopulation of synaptophysin-positive synaptic-like microvesicles (SLMV). The amounts of CHT detected on SLMV are greatly reduced by treating the cell with agents that halt AP-dependent membrane trafficking. These results demonstrate that APs have important functions for CHT trafficking in neuronal cells.
高亲和力胆碱转运体(CHT)在胆碱能神经元中表达,并有效地转运至轴突终末,在那里它控制着乙酰胆碱合成中的限速步骤。最近的研究表明,大部分CHT意外地定位于突触小泡(SV)而非突触前质膜,这确立了囊泡CHT转运作为活性依赖性CHT调节的基础。在此,我们分析了衔接蛋白3(AP - 3)缺陷型小鼠模型摩卡中CHT的细胞内分布。在摩卡小鼠中,细胞体中的颗粒结构被CHT抗体强烈标记,表明从细胞体到轴突终末的CHT转运可能存在缺陷。蛋白质印迹分析显示,与野生型小鼠相比,摩卡小鼠SV上的CHT减少了30%。然而,未检测到突触体胆碱摄取活性有显著差异,这与存在大量CHT储备池一致。为了进一步表征CHT转运,我们建立了PC12D - CHT细胞系。在该细胞系中,发现CHT与突触素阳性的突触样微泡(SLMV)亚群相关。用阻断AP依赖性膜转运的试剂处理细胞后,在SLMV上检测到的CHT量大幅减少。这些结果表明,衔接蛋白对神经元细胞中CHT的转运具有重要作用。