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首页> 外文期刊>The Journal of Comparative Neurology >Ephrin-B2 reverse signaling is required for topography but not pattern formation of lateral superior olivary inputs to the inferior colliculus
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Ephrin-B2 reverse signaling is required for topography but not pattern formation of lateral superior olivary inputs to the inferior colliculus

机译:地形需要Ephrin-B2反向信号传导,但不需要形成下丘外侧外侧橄榄输入的图案

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摘要

Graded and modular expressions of Eph-ephrins are known to provide positional information for the formation of topographic maps and patterning in the developing nervous system. Previously we have shown that ephrin-B2 is expressed in a continuous gradient across the tonotopic axis of the central nucleus of the inferior colliculus (CNIC), whereas patterns are discontinuous and modular in the lateral cortex of the IC (LCIC). The present study explores the involvement of ephrin-B2 signaling in the development of projections to the CNIC and LCIC arising from the lateral superior olivary nuclei (LSO) prior to hearing onset. Anterograde and retrograde fluorescent tracing methods in neonatal fixed tissue preparations were used to compare topographic mapping and the establishment of LSO layers/modules in wild-type and ephrin-B2lacZ/+ mice (severely compromised reverse signaling). At birth, pioneer LSO axons occupy the ipsilateral IC in both groups but are delayed contralaterally in ephrin-B2lacZ/+ mutants. By the onset of hearing, both wild-type and mutant projections form discernible layers bilaterally in the CNIC and modular arrangements within the ipsilateral LCIC. In contrast, ephrin-B2lacZ/+ mice lack a reliable topography in LSO-IC projections, suggesting that fully functional ephrin-B2 reverse signaling is required for normal projection mapping. Taken together, these ephrin-B2 findings paired with known coexpression of EphA4 suggest the importance of these signaling proteins in establishing functional auditory circuits prior to experience.
机译:已知麻黄素的分级和模块化表达可为发育中的神经系统中地形图的形成和模式提供位置信息。以前我们已经证明,ephrin-B2在下丘脑(CNIC)中心核的冠层轴上以连续梯度表达,而模式在IC的外侧皮质(LCIC)中是不连续且模块化的。本研究探讨了ephrin-B2信号参与听觉发作前侧上橄榄核(LSO)引起的CNIC和LCIC投影的发展。新生儿固定组织制剂中的顺行和逆行荧光示踪方法用于比较地形图和野生型和ephrin-B2lacZ / +小鼠中LSO层/模块的建立(严重破坏了反向信号传导)。出生时,先锋LSO轴突在两组中均占据同侧IC,但是在ephrin-B2lacZ / +突变体中对侧延迟。听力开始时,野生型和突变型突起都在CNIC的两侧形成可辨别的层,并在同侧LCIC内形成模块排列。相反,ephrin-B2lacZ / +小鼠在LSO-IC投影中缺少可靠的地形,这表明正常投影作图需要功能齐全的ephrin-B2反向信号传导。总体而言,这些ephrin-B2发现与已知的EphA4共表达配对表明,这些信号蛋白在体验之前对建立功能性听觉回路至关重要。

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