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EphA4受体通过影响β1整合素信号通路来调节树突棘重塑。

The EphA4 receptor regulates dendritic spine remodeling by affecting beta1-integrin signaling pathways.

作者信息

Bourgin Caroline, Murai Keith K, Richter Melanie, Pasquale Elena B

机构信息

Burnham Institute for Medical Research, La Jolla, CA 92037, USA.

出版信息

J Cell Biol. 2007 Sep 24;178(7):1295-307. doi: 10.1083/jcb.200610139. Epub 2007 Sep 17.

Abstract

Remodeling of dendritic spines is believed to modulate the function of excitatory synapses. We previously reported that the EphA4 receptor tyrosine kinase regulates spine morphology in hippocampal pyramidal neurons, but the signaling pathways involved were not characterized (Murai, K.K., L.N. Nguyen, F. Irie, Y. Yamaguchi, and E.B. Pasquale. 2003. Nat. Neurosci. 6:153-160). In this study, we show that EphA4 activation by ephrin-A3 in hippocampal slices inhibits integrin downstream signaling pathways. EphA4 activation decreases tyrosine phosphorylation of the scaffolding protein Crk-associated substrate (Cas) and the tyrosine kinases focal adhesion kinase (FAK) and proline-rich tyrosine kinase 2 (Pyk2) and also reduces the association of Cas with the Src family kinase Fyn and the adaptor Crk. Consistent with this, EphA4 inhibits beta1-integrin activity in neuronal cells. Supporting a functional role for beta1 integrin and Cas inactivation downstream of EphA4, the inhibition of integrin or Cas function induces spine morphological changes similar to those associated with EphA4 activation. Furthermore, preventing beta1-integrin inactivation blocks the effects of EphA4 on spines. Our results support a model in which EphA4 interferes with integrin signaling pathways that stabilize dendritic spines, thus modulating synaptic interactions with the extracellular environment.

摘要

树突棘的重塑被认为可调节兴奋性突触的功能。我们之前报道过,EphA4受体酪氨酸激酶调节海马锥体神经元的棘形态,但其中涉及的信号通路尚未明确(村井,K.K.,L.N. 阮,F. 入江,山口洋平,以及E.B. 帕斯夸莱。2003年。《自然神经科学》6:153 - 160)。在本研究中,我们表明海马切片中ephrin - A3对EphA4的激活抑制整合素下游信号通路。EphA4的激活降低了支架蛋白Crk相关底物(Cas)以及酪氨酸激酶粘着斑激酶(FAK)和富含脯氨酸的酪氨酸激酶2(Pyk2)的酪氨酸磷酸化,并且还减少了Cas与Src家族激酶Fyn以及衔接蛋白Crk的结合。与此一致的是,EphA4抑制神经元细胞中的β1整合素活性。支持β1整合素和EphA4下游Cas失活的功能作用,整合素或Cas功能的抑制诱导出与EphA4激活相关的类似棘形态变化。此外,阻止β1整合素失活可阻断EphA4对棘的影响。我们的结果支持一种模型,即EphA4干扰稳定树突棘的整合素信号通路,从而调节与细胞外环境的突触相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c8d/2064660/d59e82b723bf/jcb1781295f01.jpg

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