Liu Y, Edwards R H
Department of Neurology, University of California at San Francisco School of Medicine, San Francisco, California 94143, USA.
J Cell Biol. 1997 Nov 17;139(4):907-16. doi: 10.1083/jcb.139.4.907.
Previous studies have indicated that neuro-endocrine cells store monoamines and acetylcholine (ACh) in different secretory vesicles, suggesting that the transport proteins responsible for packaging these neurotransmitters sort to distinct vesicular compartments. Molecular cloning has recently demonstrated that the vesicular transporters for monoamines and ACh show strong sequence similarity, and studies of the vesicular monoamine transporters (VMATs) indicate preferential localization to large dense core vesicles (LDCVs) rather than synaptic-like microvesicles (SLMVs) in rat pheochromocytoma PC12 cells. We now report the localization of the closely related vesicular ACh transporter (VAChT). In PC12 cells, VAChT differs from the VMATs by immunofluorescence and fractionates almost exclusively to SLMVs and endosomes by equilibrium sedimentation. Immunoisolation further demonstrates colocalization with synaptophysin on SLMVs as well as other compartments. However, small amounts of VAChT also occur on LDCVs. Thus, VAChT differs in localization from the VMATs, which sort predominantly to LDCVs. In addition, we demonstrate ACh transport activity in stable PC12 transformants overexpressing VAChT. Since previous work has suggested that VAChT expression confers little if any transport activity in non-neural cells, we also determined its localization in transfected CHO fibroblasts. In CHO cells, VAChT localizes to the same endosomal compartment as the VMATs by immunofluorescence, density gradient fractionation, and immunoisolation with an antibody to the transferrin receptor. We have also detected ACh transport activity in the transfected CHO cells, indicating that localization to SLMVs is not required for function. In summary, VAChT differs in localization from the VMATs in PC12 cells but not CHO cells.
以往的研究表明,神经内分泌细胞将单胺和乙酰胆碱(ACh)储存在不同的分泌小泡中,这表明负责包装这些神经递质的转运蛋白分选至不同的小泡区室。分子克隆最近证明,单胺和ACh的囊泡转运体显示出很强的序列相似性,对囊泡单胺转运体(VMATs)的研究表明,在大鼠嗜铬细胞瘤PC12细胞中,它们优先定位于大致密核心囊泡(LDCVs)而非突触样微囊泡(SLMVs)。我们现在报告密切相关的囊泡ACh转运体(VAChT)的定位。在PC12细胞中,VAChT通过免疫荧光与VMATs不同,并且通过平衡沉降几乎完全分选至SLMVs和内体。免疫分离进一步证明其与突触素在SLMVs以及其他区室中共定位。然而,少量的VAChT也存在于LDCVs上。因此,VAChT在定位上与主要分选至LDCVs的VMATs不同。此外,我们在过表达VAChT的稳定PC12转化体中证明了ACh转运活性。由于先前的工作表明VAChT在非神经细胞中的表达几乎不赋予转运活性,我们还确定了其在转染的CHO成纤维细胞中的定位。在CHO细胞中,通过免疫荧光、密度梯度分级分离以及用转铁蛋白受体抗体进行免疫分离,VAChT定位于与VMATs相同的内体区室。我们还在转染的CHO细胞中检测到了ACh转运活性,这表明功能并不需要定位于SLMVs。总之,VAChT在PC12细胞中的定位与VMATs不同,但在CHO细胞中并非如此。