首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Expression, physiological action, and coexpression patterns of neuropeptide Y in rat taste-bud cells.
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Expression, physiological action, and coexpression patterns of neuropeptide Y in rat taste-bud cells.

机译:大鼠味蕾细胞中神经肽Y的表达,生理作用和共表达模式。

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Recent studies have suggested that neuropeptides could play previously unrecognized functional roles in peripheral gustation. To date, two peptides, cholecystokinin and vasoactive intestinal peptide, have been localized to subsets of taste-bud (TB) cells (TBC) and one, cholecystokinin, has been demonstrated to produce excitatory physiological actions. This study extends our knowledge of neuropeptides in TBC in three significant ways. First, using techniques of immunocytochemistry and RT-PCR, evidence is presented for the expression of a third peptide, neuropeptide Y (NPY). Like other peptide expression patterns, NPY expression is circumscribed to a subset of cells within the taste bud. Second, using physiological studies, we demonstrate that NPY specifically enhances an inwardly rectifying potassium current via NPY-Y1 receptors. This action is antagonistic to the previously demonstrated inhibitory effect exerted by cholecystokinin on the same current, thus providing important clues to their signaling roles in the TB. Third, using the technique of double-labeled fluorescent immunocytochemistry, the relationship of three subsets of neuropeptide-expressing TB cells to one another was examined. Remarkably, NPY expressions, although fewer in number than either the cholecystokinin or vasoactive intestinal peptide subsets, overlapped 100% with either peptide. Collectively, these three observations transform previously suggestive roles of neuromodulation by peptides in TB cells to more concrete signaling pathways. The extensive colocalization of these peptides suggests they may be subject to similar presynaptic influences of release yet have antagonistic postsynaptic actions. The convergence or divergence of these postsynaptic actions awaits further investigation.
机译:最近的研究表明,神经肽可以在周围味觉中发挥以前无法识别的功能。迄今为止,两种肽胆囊收缩素和血管活性肠肽已被定位在味蕾(TB)细胞(TBC)的子集中,一种胆囊收缩素已被证明具有兴奋性生理作用。这项研究通过三种重要方式扩展了我们对TBC中神经肽的了解。首先,使用免疫细胞化学和RT-PCR技术,提供了第三种肽神经肽Y(NPY)表达的证据。像其他肽表达模式一样,NPY表达被限制在味蕾内的一部分细胞中。其次,通过生理学研究,我们证明了NPY通过NPY-Y1受体特异性增强内向整流钾电流。该作用与胆囊收缩素对同一电流产生的先前证明的抑制作用相反,因此为它们在结核病中的信号传导作用提供了重要线索。第三,使用双重标记的荧光免疫细胞化学技术,检查了表达神经肽的TB细胞的三个子集彼此之间的关系。值得注意的是,NPY表达虽然数量少于胆囊收缩素或血管活性肠肽亚组,但与任何一种肽都有100%的重叠。总的来说,这三个发现将以前暗示的TB细胞中肽的神经调节作用转变为更具体的信号通路。这些肽的广泛共定位表明它们可能受到类似的突触前释放影响,但具有拮抗的突触后作用。这些突触后动作的趋同或分歧有待进一步研究。

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