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Elk-L3是一种新型的跨膜配体,作用于受体酪氨酸激酶Eph家族,在胚胎底板、顶板和后脑节段中表达。

Elk-L3, a novel transmembrane ligand for the Eph family of receptor tyrosine kinases, expressed in embryonic floor plate, roof plate and hindbrain segments.

作者信息

Gale N W, Flenniken A, Compton D C, Jenkins N, Copeland N G, Gilbert D J, Davis S, Wilkinson D G, Yancopoulos G D

机构信息

Regeneron Pharmaceuticals, Inc, Tarrytown, New York 10591, USA.

出版信息

Oncogene. 1996 Sep 19;13(6):1343-52.

PMID:8808709
Abstract

The Eph family of receptor tyrosine kinases has 13 distinct members and seven ligands for these receptors have been described to date. These receptors and their ligands have been implicated in regulating neuronal axon guidance and in patterning of the developing nervous system and may also serve a patterning and compartmentalization role outside of the nervous system as well. The ligands are all membrane-attached, and this attachment appears to be crucial for their normal function; five of the known ligands are linked to the membrane via a glycosyl phosphotidylinositol (GPI) linkage, while two of the ligands are transmembrane proteins. Despite the large number of Eph family receptors and ligands, they can be divided into just two major subclasses based on their binding specificities. All the GPI-anchored ligands bind and activate one subclass of the Eph receptors (that represented by Eck) while the two transmembrane ligands bind and activate the other major subclass of receptors (represented by Elk). Here we report the identification and characterization of the third, and most divergent, member of the transmembrane group of Eph ligands, which we term Elk-L3 (Elk-related receptor ligand number 3). Elk-L3 is notable for its remarkably restricted and prominent expression in the floor plate and roof plate of the developing neural tube and its rhombomere-specific expression in the developing hindbrain. The Elk-L3 gene has been localized to mouse chromosome 11 and human chromosome 17.

摘要

受体酪氨酸激酶的Eph家族有13个不同成员,迄今为止已描述了7种针对这些受体的配体。这些受体及其配体参与调节神经元轴突导向以及发育中神经系统的模式形成,并且在神经系统之外也可能起到模式形成和分隔的作用。这些配体均附着于膜上,这种附着对于其正常功能似乎至关重要;已知的配体中有5种通过糖基磷脂酰肌醇(GPI)连接与膜相连,而其中2种配体是跨膜蛋白。尽管Eph家族有大量的受体和配体,但根据它们的结合特异性,可分为仅两个主要亚类。所有GPI锚定的配体结合并激活Eph受体的一个亚类(以Eck为代表),而两种跨膜配体结合并激活另一个主要受体亚类(以Elk为代表)。在此,我们报告Eph配体跨膜组中第三个且差异最大的成员的鉴定和特征,我们将其命名为Elk-L3(Elk相关受体配体3)。Elk-L3的显著特点是在发育中的神经管底板和顶板中表达明显受限且突出,以及在发育中的后脑中有菱脑节特异性表达。Elk-L3基因已定位到小鼠11号染色体和人类17号染色体。

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