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Ephrin-B/EphB信号传导是舌味觉乳头正常神经支配所必需的。

Ephrin-B/EphB Signaling Is Required for Normal Innervation of Lingual Gustatory Papillae.

作者信息

Treffy Randall William, Collins David, Hoshino Natalia, Ton Son, Katsevman Gennadiy Aleksandrovich, Oleksiak Michael, Runge Elizabeth Marie, Cho David, Russo Matthew, Spec Andrej, Gomulka Jennifer, Henkemeyer Mark, Rochlin Michael William

机构信息

Department of Biology, Loyola University Chicago, Chicago, Ill., USA.

出版信息

Dev Neurosci. 2016;38(2):124-38. doi: 10.1159/000444748. Epub 2016 Apr 2.

Abstract

The innervation of taste buds is an excellent model system for studying the guidance of axons during targeting because of their discrete nature and the high fidelity of innervation. The pregustatory epithelium of fungiform papillae is known to secrete diffusible axon guidance cues such as BDNF and Sema3A that attract and repel, respectively, geniculate ganglion axons during targeting, but diffusible factors alone are unlikely to explain how taste axon terminals are restricted to their territories within the taste bud. Nondiffusible cell surface proteins such as Ephs and ephrins can act as receptors and/or ligands for one another and are known to control axon terminal positioning in several parts of the nervous system, but they have not been studied in the gustatory system. We report that ephrin-B2 linked β-galactosidase staining and immunostaining was present along the dorsal epithelium of the mouse tongue as early as embryonic day 15.5 (E15.5), but was not detected at E14.5, when axons first enter the epithelium. Ephrin-B1 immunolabeling was barely detected in the epithelium and found at a somewhat higher concentration in the mesenchyme subjacent to the epithelium. EphB1 and EphB2 were detected in lingual sensory afferents in vivo and geniculate neurites in vitro. Ephrin-B1 and ephrin-B2 were similarly effective in repelling or suppressing outgrowth by geniculate neurites in vitro. These in vitro effects were independent of the neurotrophin used to promote outgrowth, but were reduced by elevated levels of laminin. In vivo, mice null for EphB1 and EphB2 exhibited decreased gustatory innervation of fungiform papillae. These data provide evidence that ephrin-B forward signaling is necessary for normal gustatory innervation of the mammalian tongue.

摘要

味蕾的神经支配是研究轴突靶向过程中导向的一个优秀模型系统,因为它们具有离散性和高度精确的神经支配。已知菌状乳头的味觉前上皮会分泌可扩散的轴突导向信号,如脑源性神经营养因子(BDNF)和3A类 Semaphorin 蛋白,它们在靶向过程中分别吸引和排斥膝状神经节轴突,但仅靠可扩散因子不太可能解释味觉轴突终末如何被限制在味蕾内的特定区域。非扩散性细胞表面蛋白,如 Eph 受体和 Ephrin 蛋白,可以相互作为受体和/或配体,并且已知它们在神经系统的几个部位控制轴突终末的定位,但它们尚未在味觉系统中得到研究。我们报告,早在胚胎第15.5天(E15.5),Ephrin-B2 连接的β-半乳糖苷酶染色和免疫染色就出现在小鼠舌背上皮中,但在 E14.5 时未检测到,此时轴突刚进入上皮。Ephrin-B1 免疫标记在上皮中几乎检测不到,而在上皮下方的间充质中浓度稍高。在体内舌感觉传入神经和体外膝状神经突中检测到 EphB1 和 EphB2。Ephrin-B1 和 Ephrin-B2 在体外对膝状神经突的排斥或生长抑制作用相似。这些体外效应与用于促进生长的神经营养因子无关,但层粘连蛋白水平升高会使其减弱。在体内,EphB1 和 EphB2 基因敲除的小鼠菌状乳头的味觉神经支配减少。这些数据提供了证据,表明 Ephrin-B 正向信号传导对于哺乳动物舌的正常味觉神经支配是必要的。

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