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Eph受体不同剪接形式对排斥与黏附的调控

Regulation of repulsion versus adhesion by different splice forms of an Eph receptor.

作者信息

Holmberg J, Clarke D L, Frisén J

机构信息

Department of Cell and Molecular Biology, Karolinska Institute, Stockholm, Sweden.

出版信息

Nature. 2000 Nov 9;408(6809):203-6. doi: 10.1038/35041577.

DOI:10.1038/35041577
PMID:11089974
Abstract

Eph tyrosine kinase receptors and their membrane-bound ephrin ligands mediate cell interactions and participate in several developmental processes. Ligand binding to an Eph receptor results in tyrosine phosphorylation of the kinase domain, and repulsion of axonal growth cones and migrating cells. Here we report that a subpopulation of ephrin-A5 null mice display neural tube defects resembling anencephaly in man. This is caused by the failure of the neural folds to fuse in the dorsal midline, suggesting that ephrin-A5, in addition to its involvement in cell repulsion, can participate in cell adhesion. During neurulation, ephrin-A5 is co-expressed with its cognate receptor EphA7 in cells at the edges of the dorsal neural folds. Three different EphA7 splice variants, a full-length form and two truncated versions lacking kinase domains, are expressed in the neural folds. Co-expression of an endogenously expressed truncated form of EphA7 suppresses tyrosine phosphorylation of the full-length EphA7 receptor and shifts the cellular response from repulsion to adhesion in vitro. We conclude that alternative usage of different splice forms of a tyrosine kinase receptor can mediate cellular adhesion or repulsion during embryonic development.

摘要

Eph酪氨酸激酶受体及其膜结合型ephrin配体介导细胞间相互作用,并参与多个发育过程。配体与Eph受体结合会导致激酶结构域的酪氨酸磷酸化,并使轴突生长锥和迁移细胞产生排斥反应。在此,我们报告了一部分ephrin-A5基因敲除小鼠表现出类似于人类无脑畸形的神经管缺陷。这是由于神经褶在背侧中线未能融合所致,提示ephrin-A5除了参与细胞排斥反应外,还能参与细胞黏附。在神经胚形成过程中,ephrin-A5与其同源受体EphA7在背侧神经褶边缘的细胞中共同表达。神经褶中表达三种不同的EphA7剪接变体,一种全长形式和两种缺乏激酶结构域的截短形式。内源性表达的截短形式的EphA7共表达可抑制全长EphA7受体的酪氨酸磷酸化,并在体外将细胞反应从排斥转变为黏附。我们得出结论,酪氨酸激酶受体不同剪接形式的交替使用可在胚胎发育过程中介导细胞黏附或排斥。

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Regulation of repulsion versus adhesion by different splice forms of an Eph receptor.Eph受体不同剪接形式对排斥与黏附的调控
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