Marín O, Blanco M J, Nieto M A
Instituto Cajal, CSIC, Doctor Arce 37, Madrid, 28002, Spain
Dev Biol. 2001 Jun 15;234(2):289-303. doi: 10.1006/dbio.2001.0268.
Repulsion plays a fundamental role in the establishment of a topographic map of the chick retinotectal projections. This has been highlighted by studies demonstrating the role of opposing gradients of the EphA3 receptor tyrosine kinase on retinal axons and two of its ligands, ephrin-A2 and ephrin-A5, in the tectum. We have analyzed the distribution of these two ephrins in other retinorecipient structures in the chick diencephalon and mesencephalon during the period when visual connections are being established. We have found that both ephrin-A2 and ephrin-A5 and their receptors EphA4 and EphA7 are expressed in gradients whose orientation is consistent with the topography of the nasotemporal axis of the respective retinofugal projections. In addition, their distribution suggests that receptor-ligand interactions may be involved in the organization of connections between the different primary visual centers and, thus, in the topographic organization of secondary visual projections. Interestingly, where projections lack a clear topographic representation, a uniform expression of the Eph-ephrin molecules was observed. Finally, we also show that a similar patterning mechanism may be implicated in the transfer of visual information to the telencephalon. These results suggest a conserved function for EphA receptors and their ligands in the elaboration of topographic maps at multiple levels of the visual pathway.
排斥作用在雏鸡视网膜-脑顶盖投射地形图的建立过程中起着基础性作用。这一点已被多项研究所强调,这些研究表明,视网膜轴突上的EphA3受体酪氨酸激酶与其在脑顶盖中的两种配体ephrin-A2和ephrin-A5的反向梯度发挥了作用。我们分析了在视觉连接建立期间,这两种ephrin在雏鸡间脑和中脑的其他视网膜接收结构中的分布情况。我们发现,ephrin-A2和ephrin-A5及其受体EphA4和EphA7均呈梯度表达,其方向与各自视网膜传出投射的鼻颞轴地形图一致。此外,它们的分布表明受体-配体相互作用可能参与了不同初级视觉中枢之间连接的组织过程,进而参与了次级视觉投射的地形图组织过程。有趣的是,在投射缺乏清晰地形图表示的区域,观察到Eph-ephrin分子呈均匀表达。最后,我们还表明,类似的模式形成机制可能与视觉信息向端脑的传递有关。这些结果表明,EphA受体及其配体在视觉通路多个层面地形图的形成过程中具有保守功能。