首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Transsynaptic Tracing from Taste Receptor Cells Reveals Local Taste Receptor Gene Expression in Gustatory Ganglia and Brain
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Transsynaptic Tracing from Taste Receptor Cells Reveals Local Taste Receptor Gene Expression in Gustatory Ganglia and Brain

机译:来自味觉受体细胞的突触突触追踪揭示了味肠和脑中的局部味觉受体基因表达

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摘要

Taste perception begins in the oral cavity by interactions of taste stimuli with specific receptors. Specific subsets of taste receptor cells (TRCs) are activated upon tastant stimulation and transmit taste signals to afferent nerve fibers and ultimately to the brain. How specific TRCs impinge on the innervating nerves and how the activation of a subset of TRCs leads to the discrimination of tastants of different qualities and intensities is incompletely understood. To investigate the organization of taste circuits, we used gene targeting to express the transsynaptic tracer barley lectin (BL) in the gustatory system of mice. Because TRCs are not synaptically connected with the afferent nerve fibers, we first analyzed tracer production and transfer within the taste buds (TBs). Surprisingly, we found that BL is laterally transferred across all cell types in TBs of mice expressing the tracer under control of the endogenous Tas1r1 and Tas2r131 promotor, respectively. Furthermore, although we detected the BL tracer in both ganglia and brain, we also found local low-level Tas1r1 and Tas2r131 gene, and thus tracer expression in these tissues. Finally, we identified the Tas1r1 and Tas2r131-expressing cells in the peripheral and CNS using a binary genetic approach. Together, our data demonstrate that genetic transsynaptic tracing from bitter and umami receptor cells does not selectively label taste-specific neuronal circuits and reveal local taste receptor gene expression in the gustatory ganglia and the brain.
机译:味觉感知在口腔中由味觉刺激与特异性受体相互作用开始。味觉受体细胞(储税券)的特定子集是在促味剂的刺激和发射味觉信号到传入神经纤维,并最终到脑激活。具体怎么储税券的支配神经撞击以及如何储税券引线不同的质量和强度的味觉元的歧视的一个子集的激活不完全理解。调查味道电路的组织,我们使用基因靶向表达跨突触示踪大麦凝集素(BL)在小鼠的味觉系统。因为储税券不突触与传入神经纤维连接,我们首先分析了味蕾(TBS)内示踪剂的生产和传输。令人惊讶地,我们发现,BL在所有的细胞类型中表达下内源性Tas1r1和Tas2r131启动子控制的示踪物,分别小鼠的TB横向传送。此外,虽然我们在检测到两个神经节和大脑中的BL示踪剂,我们还发现本地低电平Tas1r1和Tas2r131基因,并在这些组织中从而表达示踪剂。最后,我们确定使用二进制遗传学方法在外围和中枢神经系统的Tas1r1和Tas2r131表达细胞。总之,我们的数据表明,遗传跨突触从苦和鲜味受体的细胞追踪不选择标签特定味觉神经回路和揭示味觉神经节和大脑局部味觉受体基因的表达。

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