首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Enhanced plasticity of retinothalamic projections in an ephrin-A2/A5 double mutant.
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Enhanced plasticity of retinothalamic projections in an ephrin-A2/A5 double mutant.

机译:ephrin-A2 / A5双重突变体中增强的视网膜丘脑突起可塑性。

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摘要

Ascending sensory information reaches primary sensory cortical areas via thalamic relay neurons that are organized into modality-specific compartments or nuclei. Although the sensory relay nuclei of the thalamus show consistent modality-specific segregation of afferents, we now show in a wild-type mouse strain that the visual pathway can be surgically "rewired" so as to induce permanent retinal innervation of auditory thalamic cell groups. Applying the same rewiring paradigm to a transgenic mouse lacking the EphA receptor family ligands ephrin-A2 and ephrin-A5 results in more extensive rewiring than in the wild-type strain. We also show for the first time that ephrin-A2 and ephrin-A5 define a distinct border between visual and auditory thalamus. In the absence of this ephrin-A2/A5 border and after rewiring surgery, retinal afferents are better able to invade and innervate the deafferented auditory thalamus. These data suggest that signals that induce retinal axons to innervate the denervated auditory thalamus may compete with barriers, such as the ephrins, that serve to contain them within the normal target. The present findings thus show that the targeting of retinothalamic projections can be surgically manipulated in the mouse and that such plasticity can be controlled by proteins known to regulate topographic mapping.
机译:上升的感觉信息通过丘脑中继神经元到达主要的感觉皮层区域,这些丘脑中继神经元被组织成特定于形态的腔室或细胞核。尽管丘脑的感觉中继核显示出一致的模态特异性分离传入,但我们现在在野生型小鼠品系中显示可以通过外科手术“重新连接”视觉通路,从而诱导听觉丘脑细胞群的永久性视网膜神经支配。对缺少EphA受体家族配体ephrin-A2和ephrin-A5的转基因小鼠应用相同的重新布线范例会导致比野生型菌株更广泛的重新布线。我们还首次表明,ephrin-A2和ephrin-A5定义了视觉和听觉丘脑之间的明显边界。在没有这种ephrin-A2 / A5边界的情况下,并且在进行重新布线手术后,视网膜传入神经能够更好地侵入和支配失足的听觉丘脑。这些数据表明,诱导视网膜轴突神经支配失神经的听性丘脑的信号可能与屏障(例如ephrins)竞争,这些屏障可将其包含在正常靶标内。因此,本发明的发现表明,可以在小鼠中通过外科手术来操纵视网膜脉络膜突起的靶向,并且这种可塑性可以通过已知的调节地形图的蛋白质来控制。

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