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Netrin-1 mediates neuronal survival through PIKE-L interaction with the dependence receptor UNC5B

机译:Netrin-1通过PIKE-L与依赖受体UNC5B相互作用介导神经元存活

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摘要

Netrins, a family of secreted molecules, have critical functions in axon guidance and cell migration during neuronal development(1,2). In addition to its role as a chemotropic molecule, netrin-1 also acts as a survival factor(3-7). Both UNC5 (that is, UNC5A, UNC5B, UNC5C or UNC5D) and DCC are transmembrane receptors for netrin-1 (refs 8, 9). In the absence of netrin-1, DCC and UNC5 act as dependence receptors and trigger apoptosis(3,6,10). However, how netrin-1 suppresses the apoptotic activity of the receptors remains elusive. Here we show that netrin-1 induces interaction of UNC5B with the brain-specific GtPase PIKe-L. this interaction triggers the activation of PtdIns-3-OH kinase signalling, prevents UNC5B's pro-apoptotic activity and enhances neuronal survival. Moreover, this process relies strongly on Fyn because PIKe-L is tyrosine phosphorylated in response to netrin-1, and the netrin-1-mediated interaction of UNC5B with PIKe-l is inhibited in Fyn-null mice. thus, PIKe-L acts as a downstream survival effector for netrin-1 through UNC5B in the nervous system.
机译:Netrins是一类分泌分子,在神经元发育过程中在轴突引导和细胞迁移中起关键作用(1,2)。 netrin-1除了起趋化分子的作用外,还起着生存因子的作用(3-7)。 UNC5(即UNC5A,UNC5B,UNC5C或UNC5D)和DCC都是netrin-1的跨膜受体(参考文献8、9)。在缺乏netrin-1的情况下,DCC和UNC5充当依赖性受体并触发细胞凋亡(3,6,10)。但是,netrin-1如何抑制受体的凋亡活性仍然难以捉摸。在这里,我们显示netrin-1诱导UNC5B与大脑特异性GtPase PIKe-L相互作用。这种相互作用触发了PtdIns-3-OH激酶信号的激活,阻止了UNC5B的促凋亡活性,并提高了神经元的存活率。此外,该过程强烈依赖于Fyn,因为PIKe-L响应netrin-1被酪氨酸磷酸化,并且在Fyn无小鼠中,netrin-1介导的UNC5B与PIKe-1的相互作用被抑制。因此,PIKe-L通过UNC5B在神经系统中充当netrin-1的下游生存效应子。

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