首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Targeted Taste Cell-specific Overexpression of Brain-derived Neurotrophic Factor in Adult Taste Buds Elevates Phosphorylated TrkB Protein Levels in Taste Cells Increases Taste Bud Size and Promotes Gustatory Innervation
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Targeted Taste Cell-specific Overexpression of Brain-derived Neurotrophic Factor in Adult Taste Buds Elevates Phosphorylated TrkB Protein Levels in Taste Cells Increases Taste Bud Size and Promotes Gustatory Innervation

机译:成年味蕾中脑源性神经营养因子的目标味觉细胞特异性过表达会提高味觉细胞中磷酸化的TrkB蛋白水平增加味觉芽的大小并促进味觉神经支配

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摘要

Brain-derived neurotrophic factor (BDNF) is the most potent neurotrophic factor in the peripheral taste system during embryonic development. It is also expressed in adult taste buds. There is a lack of understanding of the role of BDNF in the adult taste system. To address this, we generated novel transgenic mice in which transgene expression was driven by an α-gustducin promoter coupling BDNF expression to the postnatal expression of gustducin in taste cells. Immunohistochemistry revealed significantly stronger BDNF labeling in taste cells of high BDNF-expressing mouse lines compared with controls. We show that taste buds in these mice are significantly larger and have a larger number of taste cells compared with controls. To examine whether innervation was affected in Gust-BDNF mice, we used antibodies to neural cell adhesion molecule (NCAM) and ATP receptor P2X3. The total density of general innervation and specifically the gustatory innervation was markedly increased in high BDNF-expressing mice compared with controls. TrkB and NCAM gene expression in laser capture microdissected taste epithelia were significantly up-regulated in these mice. Up-regulation of TrkB transcripts in taste buds and elevated taste cell-specific TrkB phosphorylation in response to increased BDNF levels indicate that BDNF controls the expression and activation of its high affinity receptor in taste cells. This demonstrates a direct taste cell function for BDNF. BDNF also orchestrates and maintains taste bud innervation. We propose that the Gust-BDNF transgenic mouse models can be employed to further dissect the specific roles of BDNF in the adult taste system.
机译:脑源性神经营养因子(BDNF)是胚胎发育过程中外周味觉系统中最有效的神经营养因子。它也表现在成年味蕾中。缺乏对BDNF在成人味觉系统中的作用的了解。为了解决这个问题,我们生成了新型转基因小鼠,其中转基因表达由α-gustducin启动子驱动,该启动子将BDNF表达与味觉细胞中gustgustin的产后表达偶联。免疫组织化学显示,与对照组相比,高表达BDNF的小鼠品系的味觉细胞中BDNF标记明显更强。我们显示,与对照相比,这些小鼠的味蕾明显更大,并且味蕾细胞数量更多。要检查神经支配神经元(Gust-BDNF)小鼠中神经支配是否受到影响,我们使用了抗神经细胞粘附分子(NCAM)和ATP受体P2X3的抗体。与对照组相比,高表达BDNF的小鼠的一般神经支配,特别是味觉神经支配的总密度显着增加。在这些小鼠中,激光捕获显微切割的味觉上皮细胞中的TrkB和NCAM基因表达明显上调。味蕾中TrkB转录产物的上调和对BDNF水平升高的味觉细胞特异性TrkB磷酸化升高表明,BDNF控制味觉细胞中其高亲和力受体的表达和激活。这证明了针对BDNF的直接味觉细胞功能。 BDNF还可以协调并维持味蕾的神经支配。我们建议,可以使用Gust-BDNF转基因小鼠模型来进一步剖析BDNF在成人味觉系统中的特定作用。

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