St John J A, Key B
Neurodevelopment Laboratory, Department of Anatomical Sciences, The University of Queensland, 4072, Brisbane, Australia.
Brain Res Dev Brain Res. 2001 Jan 31;126(1):43-56. doi: 10.1016/s0165-3806(00)00136-x.
Primary olfactory neurons are located in the olfactory neuroepithelium lining the nasal cavity. Their axons converge and form glomeruli with the dendrites of second-order neurons in the olfactory bulb. The molecular basis of primary olfactory axon guidance, targeting and subsequent arborisation is largely unknown. In this study we examined the spatio-temporal expression of the Eph receptor EphB2 and its ligands, ephrin-B1 and ephrin-B2, during development of the rat primary olfactory system. Unlike in other regions of the nervous system where receptor and ligand expression patterns are usually non-overlapping, EphB2, ephrin-B1 and ephrin-B2 were all expressed by primary and second-order olfactory neurons. In the embryonic animal we found that these three proteins had distinct and different expression patterns. EphB2 was first expressed at E18.5 by the perikarya of primary olfactory neurons. In contrast, ephrin-B1 was expressed from E13.5 and was localised to the axons of these cells up to E18.5 but was then restricted to the perikarya. Ephrin-B2, however, was expressed by olfactory ensheathing cells. EphB2, ephrin-B1 and ephrin-B2 were also expressed in the prenatal olfactory bulb and were restricted to the perikarya of mitral cells. In the post-natal olfactory bulb there was a shift in the localisation of both EphB2 and ephrin-B1 to the dendritic arborisations of mitral cells. The dynamic and tightly regulated spatio-temporal expression patterns of EphB2, ephrin-B1 and ephrin-B2 by specific olfactory cell populations suggest that these molecules have the potential to regulate important developmental events in the olfactory system.
初级嗅觉神经元位于鼻腔内衬的嗅神经上皮中。它们的轴突汇聚并与嗅球中二级神经元的树突形成小球。初级嗅觉轴突导向、靶向及随后分支的分子基础在很大程度上尚不清楚。在本研究中,我们检测了大鼠初级嗅觉系统发育过程中Eph受体EphB2及其配体ephrin - B1和ephrin - B2的时空表达。与神经系统的其他区域不同,在这些区域受体和配体的表达模式通常不重叠,而EphB2、ephrin - B1和ephrin - B2均由初级和二级嗅觉神经元表达。在胚胎动物中,我们发现这三种蛋白质具有独特且不同的表达模式。EphB2在胚胎第18.5天首次由初级嗅觉神经元的胞体表达。相比之下,ephrin - B1从胚胎第13.5天开始表达,并在胚胎第18.5天之前定位于这些细胞的轴突,但随后局限于胞体。然而,ephrin - B2由嗅鞘细胞表达。EphB2、ephrin - B1和ephrin - B2在产前嗅球中也有表达,并局限于二尖瓣细胞的胞体。在出生后的嗅球中,EphB2和ephrin - B1的定位均转移至二尖瓣细胞的树突分支。特定嗅觉细胞群体对EphB2、ephrin - B1和ephrin - B2的动态且严格调控的时空表达模式表明,这些分子有可能调节嗅觉系统中重要的发育事件。