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Topographic-specific axon branching controlled by ephrin-As is the critical event in retinotectal map development.由 Ephrin-A 控制的地形特异性轴突分支是视网膜顶盖图谱发育中的关键事件。
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Genetic analysis of ephrin-A2 and ephrin-A5 shows their requirement in multiple aspects of retinocollicular mapping.对ephrin-A2和ephrin-A5的基因分析表明它们在视网膜-视皮质映射的多个方面发挥作用。
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埃菲林-A5在体内限制了鸡视网膜顶盖投射中地形特异性的树突分支。

Ephrin-A5 restricts topographically specific arborization in the chick retinotectal projection in vivo.

作者信息

Sakurai Takashi, Wong Eric, Drescher Uwe, Tanaka Hideaki, Jay Daniel G

机构信息

Department of Physiology, Tufts University School of Medicine, Boston, MA 02111, USA.

出版信息

Proc Natl Acad Sci U S A. 2002 Aug 6;99(16):10795-800. doi: 10.1073/pnas.162161499. Epub 2002 Jul 24.

DOI:10.1073/pnas.162161499
PMID:12140366
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC125048/
Abstract

The retinotectal map is the best characterized model system to study how axons respond to guidance cues during the formation of the nervous system. Recent studies have shown that the critical event in forming this map is topographic-specific axon branching. To elucidate the in vivo role of the repulsive cue ephrin-A5 in this event, we used chromophore-assisted laser inactivation (CALI) to generate acute loss of ephrin-A5 function in localized areas of the posterior tectum of chick embryos in ovo and analyzed the resulting changes of retinal projections during initial outgrowth (E11) and when retinal axons arborize in the deep layers in the tectum (E12). We confirmed that ephrin-A5 functions to restrict initial axon outgrowth at E11. At E12, CALI of ephrin-A5 did not affect the extent of axon outgrowth on the tectal surface but instead caused ectopic arborization posterior to the topographically correct site in deeper layers of the tectum. This shows that ephrin-A5 restricts arborization during this critical process for developing the retinotopic map. CALI provides an approach to inactivate in vivo function in higher vertebrates with high temporal and spatial specificity that may have wide application.

摘要

视网膜 - 顶盖图谱是研究轴突在神经系统形成过程中如何对导向线索做出反应的特征最为明确的模型系统。最近的研究表明,形成这一图谱的关键事件是地形特异性轴突分支。为了阐明排斥性信号分子ephrin - A5在此事件中的体内作用,我们利用发色团辅助激光失活(CALI)技术,在鸡胚卵内后顶盖局部区域急性消除ephrin - A5的功能,并分析了在初始生长阶段(E11)以及视网膜轴突在顶盖深层形成分支时(E12)视网膜投射的变化。我们证实,ephrin - A5在E11时起到限制轴突初始生长的作用。在E12时,对ephrin - A5进行CALI处理并不影响轴突在顶盖表面的生长范围,但却导致在顶盖深层地形正确位置后方出现异位分支。这表明ephrin - A5在形成视网膜拓扑图谱的这一关键过程中限制分支形成。CALI提供了一种在高等脊椎动物体内以高时空特异性失活功能的方法,可能具有广泛的应用前景。