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Unified nomenclature for Eph family receptors and their ligands, the ephrins. Eph Nomenclature Committee.Eph家族受体及其配体ephrins的统一命名法。Eph命名委员会。
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Dynamic expression suggests multiple roles of the eph family receptor brain-specific kinase (Bsk) during mouse neurogenesis.动态表达表明Eph家族受体脑特异性激酶(Bsk)在小鼠神经发生过程中具有多种作用。
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Membrane-associated molecules regulate the formation of layer-specific cortical circuits.膜相关分子调节层特异性皮质回路的形成。
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En-2 regulates the expression of the ligands for Eph type tyrosine kinases in chick embryonic tectum.En-2调节鸡胚视顶盖中Eph型酪氨酸激酶配体的表达。
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AL-1-induced growth cone collapse of rat cortical neurons is correlated with REK7 expression and rearrangement of the actin cytoskeleton.AL-1诱导的大鼠皮质神经元生长锥塌陷与REK7表达及肌动蛋白细胞骨架重排相关。
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Development of axonal arbors of layer 6 pyramidal neurons in ferret primary visual cortex.雪貂初级视觉皮层第6层锥体神经元轴突分支的发育
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Detection of ligands in regions anatomically connected to neurons expressing the Eph receptor Bsk: potential roles in neuron-target interaction.在解剖学上与表达Eph受体Bsk的神经元相连的区域中检测配体:在神经元与靶标相互作用中的潜在作用。
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在皮质回路发育过程中,一种Eph受体酪氨酸激酶配体对特定轴突群体的双重作用。

Dual action of a ligand for Eph receptor tyrosine kinases on specific populations of axons during the development of cortical circuits.

作者信息

Castellani V, Yue Y, Gao P P, Zhou R, Bolz J

机构信息

Institut National de la Santé et de la Recherche Médicale Unité 371 "Cerveau et Vision," 69500 Bron, France.

出版信息

J Neurosci. 1998 Jun 15;18(12):4663-72. doi: 10.1523/JNEUROSCI.18-12-04663.1998.

DOI:10.1523/JNEUROSCI.18-12-04663.1998
PMID:9614241
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6792691/
Abstract

The structural basis of cortical columns are radially oriented axon collaterals that form precise connections between distinct cortical layers. During development, these connections are highly specified from the initial outgrowth of collateral branches. Our previous work provided evidence for positional cues confined to individual layers that induce and/or prevent the formation of axon collaterals in specific populations of cortical neurons. Here we demonstrated with in situ hybridization techniques that mRNA of the Eph receptor tyrosine kinase EphA5 and one of its ligands, ephrin-A5, are present in distinct cortical layers, at a time when intrinsic connections are being formed in the cortex. Axonal guidance assays indicate that ephrin-A5 is a repellent signal for a populations of axons that in vivo avoid the cortical layer expressing ephrin-A5. In contrast to its established role as a repulsive axonal guidance signal, ephrin-A5 specifically mediates sprouting of those cortical axons that target the ephrin-A5-expressing layer in vivo. These results identify a novel function of ephrin-A5 on axonal arbor formation. The laminar distribution and the dual action on specific populations of axons suggest that ephrin-A5 plays a role in the assembly of local cortical circuits.

摘要

皮质柱的结构基础是呈放射状排列的轴突侧支,它们在不同的皮质层之间形成精确的连接。在发育过程中,这些连接从侧支分支最初长出时就高度特化。我们之前的研究为局限于各个层的位置线索提供了证据,这些线索诱导和/或阻止特定皮质神经元群体中轴突侧支的形成。在这里,我们用原位杂交技术证明,在皮质正在形成内在连接的时候,Eph受体酪氨酸激酶EphA5及其配体之一ephrin-A5的mRNA存在于不同的皮质层中。轴突导向分析表明,ephrin-A5是体内避开表达ephrin-A5的皮质层的一群轴突的排斥信号。与其作为排斥性轴突导向信号的既定作用相反,ephrin-A5特异性介导那些在体内靶向表达ephrin-A5层的皮质轴突的芽生。这些结果确定了ephrin-A5在轴突分支形成上的新功能。其层状分布以及对特定轴突群体的双重作用表明,ephrin-A5在局部皮质回路的组装中发挥作用。