首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Neurotrophin-regulated sorting of opioid receptors in the biosynthetic pathway of neurosecretory cells.
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Neurotrophin-regulated sorting of opioid receptors in the biosynthetic pathway of neurosecretory cells.

机译:神经营养素调节神经分泌细胞生物合成途径中阿片受体的分类。

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Neurotrophins modulate the endogenous opioid system, but the underlying mechanisms are poorly understood. We observed an unexpected effect of neurotrophin signaling on the membrane trafficking of recombinant opioid receptors expressed in neurosecretory cells. Epitope-tagged delta opioid receptor (DOR) and mu opioid receptor (MOR) were differentially localized between surface and internal membrane pools, respectively, when expressed in primary cultured hippocampal neurons, consistent with previous studies by others of natively expressing neurons. Selective intracellular targeting of DOR was observed in nerve growth factor (NGF)-differentiated PC12 neurosecretory cells but not in PC12 cells cultured in the absence of NGF, where both DOR and MOR were localized in the plasma membrane. Surprisingly, NGF initiated intracellular targeting of DOR in PC12 cells acutely, within 60 min after initial activation of TrkA. The NGF-induced intracellular pool of DOR originated from a late stage of the biosynthetic pathway after exit from the endoplasmic reticulum and processing of N-linked glycans in the Golgi, resulting in the accumulation in cells of a biochemically mature "reserve" pool of intracellular DOR that exhibited depolarization-dependent insertion into the plasma membrane. The C-terminal cytoplasmic tail of DOR contains a signal determining the specificity of NGF-regulated intracellular targeting. These results indicate that cloned opioid receptors are differentially targeted when expressed heterologously in neurosecretory cells, establish a model system that facilitates mechanistic study of this process, and suggest a novel function of neurotrophins in modulating the anterograde membrane trafficking of opioid receptors.
机译:神经营养蛋白调节内源性阿片样物质系统,但其潜在机制了解甚少。我们观察到神经营养蛋白信号传导对神经分泌细胞中表达的重组阿片受体的膜运输的意想不到的影响。当在原代培养的海马神经元中表达时,表位标记的δ阿片受体(DOR)和μ阿片受体(MOR)分别位于表面膜池和内部膜池之间,与先前其他本地表达神经元的研究一致。在神经生长因子(NGF)分化的PC12神经分泌细胞中观察到DOR的选择性细胞内靶向,但在缺乏NGF的情况下培养的PC12细胞中未观察到DOR,DOR和MOR均定位在质膜中。出人意料的是,NGF在TrkA最初激活后60分钟内开始在PC12细胞中急性启动DOR的细胞内靶向。 NGF诱导的DOR胞内池起源于内质网退出后在高尔基体中的N-连接聚糖加工后的生物合成途径的后期,导致细胞内生物化学成熟的“储备”池在细胞中积累DOR表现出去极化依赖性插入质膜。 DOR的C末端胞质尾包含一个信号,该信号确定NGF调节的细胞内靶向的特异性。这些结果表明,当在神经分泌细胞中异源表达时,克隆的阿片受体被不同地靶向,建立了一个模型系统来促进这一过程的机理研究,并提示了神经营养蛋白在调节阿片受体的顺行膜运输中的新功能。

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