首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Essential role for integrin linked kinase in Akt-mediated integrin survival signaling in hippocampal neurons.
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Essential role for integrin linked kinase in Akt-mediated integrin survival signaling in hippocampal neurons.

机译:整合素连接激酶在海马神经元Akt介导的整合素生存信号中的重要作用。

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摘要

Activation of integrin receptors in neurons can promote cell survival and synaptic plasticity, but the underlying signal transduction pathway(s) is unknown. We report that integrin signaling prevents apoptosis of embryonic hippocampal neurons by a mechanism involving integrin-linked kinase (ILK) that activates Akt kinase. Activation of integrins using a peptide containing the amino acid sequence EIKLLIS derived from the alpha chain of laminin protected hippocampal neurons from apoptosis induced by glutamate or staurosporine, and increased Akt activity in a beta1 integrin-dependent manner. Transfection of neurons with a plasmid encoding dominant negative Akt blocked the protective effect of the integrin-activating peptide, as did a chemical inhibitor of Akt. Although inhibitors of phosphoinositide-3 (PI3) kinase blocked the protective effect of the peptide, we found no increase in PI3 kinase activity following integrin stimulation suggesting that PI3 kinase was necessary for Akt activity but was not sufficient for the increase in Akt activity following integrin activation. Instead, we show a requirement for ILK in integrin receptor-induced Akt activation. ILK was activated following integrin stimulation and dominant negative ILK blocked integrin-mediated Akt activation and cell survival. Activation of ILK and Akt were also required for neuroprotection by substrate-associated laminin. These results establish a novel pathway that signals cell survival in neurons in response to integrin receptor activation.
机译:神经元中整联蛋白受体的激活可以促进细胞存活和突触可塑性,但潜在的信号转导途径尚不清楚。我们报告说,整合素信号传导可通过激活Akt激酶的整合素连接激酶(ILK)的机制阻止胚胎海马神经元的凋亡。使用含有源自层粘连蛋白α链的氨基酸序列EIKLLIS的肽激活整联蛋白可保护海马神经元免受谷氨酸或星形孢菌素诱导的凋亡,并以β1整联蛋白依赖性方式增加Akt活性。用编码显性负性Akt的质粒转染神经元,就像Akt的化学抑制剂一样,阻断了整联蛋白激活肽的保护作用。尽管phosphosinositide-3(PI3)激酶抑制剂阻止了该肽的保护作用,但我们发现整联蛋白刺激后PI3激酶活性没有增加,这表明PI3激酶对于Akt活性是必需的,但不足以在整联蛋白后增加Akt活性激活。相反,我们在整联蛋白受体诱导的Akt激活中显示了对ILK的需求。 ILK在整合素刺激后被激活,显性负性ILK阻断了整合素介导的Akt活化和细胞存活。底物相关层粘连蛋白的神经保护也需要激活ILK和Akt。这些结果建立了一个新途径,该信号可以响应整合素受体激活而发出信号,指示神经元中的细胞存活。

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