Xu Jiang, de Araujo Alan Moreira, Xi Ranhui, Luo Kaihua, Han Mingyue, Lin Xiaoli, Lu Chanyi, Zhou Minliang, Hankenson Kurt D, Margolskee Robert F, Matsumoto Ichiro, de Lartigue Guillaume, Choi Myunghwan, Jiang Peihua
Monell Chemical Senses Center, Philadelphia, PA, USA.
Monell Chemical Senses Center, Philadelphia, PA, USA.
Stem Cell Reports. 2025 Jul 8;20(7):102542. doi: 10.1016/j.stemcr.2025.102542. Epub 2025 Jun 19.
Replenishment of taste cells in taste buds throughout life requires innervation. Recently, we provided evidence that R-spondin is sufficient to promote taste cell generation and restore taste buds in a nerve transection model. Yet, the necessity of gustatory-neuron-supplied R-spondin 2 (RSPO2) in taste tissue homeostasis has remained unresolved. We used genetic approaches to investigate this. In a strain that carries an Rspo2 hypomorphic allele, the number of taste buds was significantly reduced in these mice, compared to wild-type mice, in both anterior and posterior tongue. Specific ablation of Rspo2 in the nodose-petrosal-jugular ganglion complex in another mouse strain led to nearly complete loss of taste buds in the circumvallate papilla. Epithelial ablation of Rnf43/Znrf3, the activity of which is antagonized by R-spondin binding, led to exuberant, sustained expansion of taste buds. Thus, our data strongly support that the RSPO2-RNF43/ZNRF3 axis serves as a master regulator for taste tissue homeostasis.
味蕾中的味觉细胞在一生中的补充都需要神经支配。最近,我们提供了证据表明,R-spondin足以促进味觉细胞生成,并在神经横断模型中恢复味蕾。然而,味觉神经元提供的R-spondin 2(RSPO2)在味觉组织稳态中的必要性仍未得到解决。我们使用基因方法对此进行研究。在携带Rspo2低表达等位基因的品系中,与野生型小鼠相比,这些小鼠的前舌和后舌中的味蕾数量均显著减少。在另一小鼠品系的结状-岩状-颈静脉神经节复合体中特异性敲除Rspo2,导致轮廓乳头中的味蕾几乎完全丧失。Rnf43/Znrf3的上皮敲除(其活性被R-spondin结合所拮抗)导致味蕾过度、持续的扩张。因此,我们的数据有力地支持了RSPO2-RNF43/ZNRF3轴作为味觉组织稳态的主要调节因子。