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β-catenin is required for taste bud cell renewal and behavioral taste perception in adult mice

机译:β-catenin是成年小鼠更新味蕾细胞和行为味觉所必需的

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Taste stimuli are transduced by taste buds and transmitted to the brain via afferent gustatory fibers. Renewal of taste receptor cells from actively dividing progenitors is finely tuned to maintain taste sensitivity throughout life. We show that conditional β-catenin deletion in mouse taste progenitors leads to rapid depletion of progenitors and Shh+ precursors, which in turn causes taste bud loss, followed by loss of gustatory nerve fibers. In addition, our data suggest LEF1, TCF7 and Wnt3 are involved in a Wnt pathway regulatory feedback loop that controls taste cell renewal in the circumvallate papilla epithelium. Unexpectedly, taste bud decline is greater in the anterior tongue and palate than in the posterior tongue. Mutant mice with this regional pattern of taste bud loss were unable to discern sweet at any concentration, but could distinguish bitter stimuli, albeit with reduced sensitivity. Our findings are consistent with published reports wherein anterior taste buds have higher sweet sensitivity while posterior taste buds are better tuned to bitter, and suggest β-catenin plays a greater role in renewal of anterior versus posterior taste buds.
机译:味蕾通过味蕾转导味觉刺激,并通过味觉纤维将其传递至大脑。从活跃分裂的祖细胞更新味觉受体细胞,以在整个生命中保持味觉敏感性。我们表明,在小鼠味觉祖细胞中有条件的β-catenin缺失导致祖细胞和Shh +前体的快速耗竭,进而导致味蕾损失,然后是味觉神经纤维损失。此外,我们的数据表明LEF1,TCF7和Wnt3参与了Wnt通路调节反馈回路,该回路控制着环周乳头上皮中味觉细胞的更新。出乎意料的是,前舌和上颚的味蕾下降比后舌更大。具有这种味蕾消失的区域模式的突变小鼠不能分辨任何浓度的甜味,但是可以区分苦味刺激物,尽管敏感性降低。我们的发现与已发表的报道一致,在这些报道中,前味蕾对甜味的敏感性更高,而后味蕾则更适合苦味,这表明β-连环蛋白在前味蕾和后味蕾的更新中起着更大的作用。

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