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首页> 外文期刊>The Journal of Comparative Neurology >Ephrin-A2 and -A5 influence patterning of normal and novel retinal projections to the thalamus: Conserved mapping mechanisms in visual and auditory thalamic targets.
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Ephrin-A2 and -A5 influence patterning of normal and novel retinal projections to the thalamus: Conserved mapping mechanisms in visual and auditory thalamic targets.

机译:Ephrin-A2和-A5影响正常和新颖的视网膜投射到丘脑的模式:视觉和听觉丘脑靶标中保守的作图机制。

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摘要

Sensory axons are targeted to modality-specific nuclei in the thalamus. Retinal ganglion cell axons project retinotopically to their principal thalamic target, the dorsal lateral geniculate nucleus (LGd), in a pattern likely dictated by the expression of molecular gradients in the LGd. Deafferenting the auditory thalamus induces retinal axons to innervate the medial geniculate nucleus (MGN). These retino-MGN projections also show retinotopic organization. Here we show that ephrin-A2 and -A5, which are expressed in similar gradients in the MGN and LGd, can be used to pattern novel retinal projections in the MGN. As in the LGd, retinal axons from each eye terminate in discrete eye-specific zones in the MGN of rewired wild-type and ephrin-A2/A5 knockout mice. However, ipsilateral eye axons, which arise from retinal regions of high EphA5 receptor expression and represent central visual field, terminate in markedly different ways in the two mice. In rewired wild-type mice, ipsilateral axons specifically avoid areas of high ephrin expression in the MGN. In rewired ephrin knockout mice, ipsilateral projections shift in location and spread more broadly, leading to an expanded representation of the ipsilateral eye in the MGN. Similarly, ipsilateral projections to the LGd in ephrin knockout mice are shifted and are more widespread than in the LGd of wild-type mice. In the MGN, as in the LGd, terminations from the two eyes show little overlap even in the knockout mice, suggesting that local interocular segregation occurs regardless of other patterning determinants. Our data demonstrate that graded topographic labels, such as the ephrins, can serve to shape multiple related aspects of afferent patterning, including topographic mapping and the extent and spread of eye-specific projections. Furthermore, when mapping labels and other cues are expressed in multiple target zones, novel projections are patterned according to rules that operate in their canonical targets. J. Comp. Neurol. 488:140-151, 2005. (c) 2005 Wiley-Liss, Inc.
机译:感觉轴突针对丘脑中特定于形态的细胞核。视网膜神经节细胞轴突在视网膜上向其主要丘脑靶标背外侧膝状核(LGd)投射,其模式可能由LGd中分子梯度的表达决定。使听觉丘脑丧失力可诱导视网膜轴突支配内侧膝状肌核(MGN)。这些视网膜MGN预测也显示了视网膜组织。在这里我们表明,在MGN和LGd中以相似的梯度表达的ephrin-A2和-A5可用于在MGN中图案化新颖的视网膜投影。像LGd一样,每只眼睛的视网膜轴突终止于野生型和ephrin-A2 / A5敲除小鼠的MGN中离散的眼睛特定区域。但是,由高EphA5受体表达的视网膜区域产生并代表中央视野的同侧眼轴突在两只小鼠中以明显不同的方式终止。在重新布线的野生型小鼠中,同侧轴突特别避免了MGN中高ephrin表达的区域。在重新连接的ephrin基因敲除小鼠中,同侧突起的位置发生偏移并散布更广,从而导致MGN中同侧眼的扩大表示。同样,与ephrin基因敲除小鼠相比,LGd的同侧投射比野生型小鼠的LGd移位且分布更广泛。在MGN中,如在LGd中一样,即使在基因敲除小鼠中,两只眼睛的末端也几乎没有重叠,这表明不管其他构图决定因素如何,都存在局部眼内分离。我们的数据表明,分级的地形标签(例如麻黄素)可用于塑造传入图案的多个相关方面,包括地形图以及眼睛特定投影的范围和散布。此外,当在多个目标区域中表达映射标签和其他提示时,会根据在其规范目标中运行的规则对新颖的投影进行图案化。 J.比较神经元。 488:140-151,2005.(c)2005 Wiley-Liss,Inc.

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