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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Interaction of cellular prion and stress-inducible protein 1 promotes neuritogenesis and neuroprotection by distinct signaling pathways.
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Interaction of cellular prion and stress-inducible protein 1 promotes neuritogenesis and neuroprotection by distinct signaling pathways.

机译:细胞病毒和应激诱导蛋白1的相互作用通过不同的信号通路促进神经形成和神经保护。

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摘要

Understanding the physiological function of the cellular prion (PrPc) depends on the investigation of PrPc-interacting proteins. Stress-inducible protein 1 (STI1) is a specific PrPc ligand that promotes neuroprotection of retinal neurons through cAMP-dependent protein kinase A (PKA). Here, we examined the signaling pathways and functional consequences of the PrPc interaction with STI1 in hippocampal neurons. Both PrPc and STI1 are abundantly expressed and highly colocalized in the hippocampus in situ, indicating that they can interact in vivo. Recombinant STI1 (His6-STI1) added to hippocampal cultures interacts with PrPc at the neuronal surface and elicits neuritogenesis in wild-type neurons but not in PrPc-null cells. This effect was abolished by antibodies against either PrPc or STI1 and was dependent on the STI1 domain that binds PrPc. Binding of these proteins induced the phosphorylation/activation of the mitogen-activated protein kinase, which was essential for STI1-promoted neuritogenesis. His6-STI1, but not its counterpart lacking the PrPc binding site, prevented cell death via PKA activation. These results demonstrate that two parallel effects of the PrPc-STI1 interaction, neuritogenesis and neuroprotection, are mediated by distinct signaling pathways.
机译:了解细胞病毒(PrPc)的生理功能取决于对PrPc相互作用蛋白的研究。应激诱导蛋白1(STI1)是一种特定的PrPc配体,可通过cAMP依赖性蛋白激酶A(PKA)促进视网膜神经元的神经保护。在这里,我们检查了海马神经元中PrPc与STI1相互作用的信号通路和功能后果。 PrPc和STI1都在海马原位大量表达并高度共定位,表明它们可以在体内相互作用。添加到海马培养物中的重组STI1(His6-STI1)在神经元表面与PrPc相互作用,并在野生型神经元中引发神经发生,但在PrPc-null细胞中则不发生。抗PrPc或STI1的抗体消除了这种效应,并且依赖于结合PrPc的STI1域。这些蛋白的结合诱导了丝裂原激活的蛋白激酶的磷酸化/激活,这对STI1促进的神经形成至关重要。 His6-STI1,但不是缺少PrPc结合位点的对应物,通过PKA激活阻止了细胞死亡。这些结果表明,PrPc-STI1相互作用的两个平行作用,即神经形成和神经保护作用,是由不同的信号通路介导的。

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