首页> 外文OA文献 >The vesicular monoamine transporter 2 is present in small synaptic vesicles and preferentially localizes to large dense core vesicles in rat solitary tract nuclei.
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The vesicular monoamine transporter 2 is present in small synaptic vesicles and preferentially localizes to large dense core vesicles in rat solitary tract nuclei.

机译:囊泡单胺转运蛋白2存在于小的突触囊泡中,并优先定位于大鼠单束核中的大而密集的核心囊泡。

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摘要

In central neurons, monamine neurotransmitters are taken up and stored within two distinct classes of regulated secretory vesicles: small synaptic vesicles and large dense core vesicles (DCVs). Biochemical and pharmacological evidence has shown that this uptake is mediated by specific vesicular monamine transporters (VMATs). Recent molecular cloning techniques have identified the vesicular monoamine transporter (VMAT2) that is expressed in brain. This transporter determines the sites of intracellular storage of monoamines and has been implicated in both the modulation of normal monoaminergic neurotransmission and the pathogenesis of related neuropsychiatric disease. We used an antiserum against VMAT2 to examine its ultrastructural distribution in rat solitary tract nuclei, a region that contains a dense and heterogeneous population of monoaminergic neurons. We find that both immunoperoxidase and immunogold labeling for VMAT2 localize to DCVs and small synaptic vesicles in axon terminals, the trans-Golgi network of neuronal perikarya, tubulovesicles of smooth endoplasmic reticulum, and potential sites of vesicular membrane recycling. In axon terminals, immunogold labeling for VMAT2 was preferentially associated with DCVs at sites distant from typical synaptic junctions. The results provide direct evidence that a single VMAT is expressed in two morphologically distinct types of regulated secretory vesicles in central monoaminergic neurons.
机译:在中枢神经元中,单胺神经递质被摄取并储存在两类不同的调节性分泌囊泡中:小的突触囊泡和大的密集核心囊泡(DCV)。生化和药理学证据表明,这种摄取是由特定的水泡单胺转运蛋白(VMAT)介导的。最近的分子克隆技术已经鉴定出在脑中表达的水泡单胺转运蛋白(VMAT2)。该转运蛋白确定单胺在细胞内储存的位点,并已参与正常单胺能神经传递的调节和相关神经精神病的发病机理。我们使用了针对VMAT2的抗血清来检查其在大鼠孤束核中的超微结构分布,该区域包含一个密集且异质的单胺能神经元群体。我们发现,VMAT2的免疫过氧化物酶和免疫金标记均定位于DCVs和轴突末端的小突触小泡,神经元皮核的反高尔基网络,平滑内质网的微管小泡以及潜在的囊泡膜回收位点。在轴突末端,VMAT2的免疫金标记优先与远离典型突触连接点的DCV相关。结果提供了直接的证据,即单个VMAT在中央单胺能神经元的两种形态上不同的调节型分泌囊泡中表达。

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