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首页> 外文期刊>Human Molecular Genetics >A novel Akt3 mutation associated with enhanced kinase activity and seizure susceptibility in mice.
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A novel Akt3 mutation associated with enhanced kinase activity and seizure susceptibility in mice.

机译:与小鼠激酶活性增强和癫痫发作易感性相关的新型Akt3突变。

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In a phenotype-driven mutagenesis screen, a novel, dominant mouse mutation, Nmf350, caused low seizure threshold, sporadic tonic-clonic seizures, brain enlargement and ectopic neurons in the dentate hilus and molecular layer of the hippocampus. Genetic mapping implicated Akt3, one of four candidates within the critical interval. Sequencing analysis revealed that mutants have a missense mutation in Akt3 (encoding one of three AKT/protein kinase B molecules), leading to a non-synonymous amino acid substitution in the highly conserved protein kinase domain. Previous knockout studies showed that Akt3 is pivotal in postnatal brain development, including a smaller brain, although seizures were not observed. In contrast to Akt3(Nmf350), we find that Akt3 null mice exhibit an elevated seizure threshold. An in vitro kinase assay revealed that Akt3(Nmf350) confers higher enzymatic activity, suggesting that Akt3(Nmf350) might enhance AKT signaling in the brain. In the dentate gyrus of Akt3(Nmf350) homozygotes, we also observed a modest increase in immunoreactivity of phosphorylated ribosomal protein S6, an AKT pathway downstream target. Together these findings suggest that Akt3(Nmf350) confers an increase of AKT3 activity in specific neuronal populations in the brain, and a unique dominant phenotype. Akt3(Nmf350) mice provide a new tool for studying physiological roles of AKT signaling in the brain, and potentially novel mechanisms for epilepsy.
机译:在表型驱动的诱变筛选中,一种新型的显性小鼠突变Nmf350导致癫痫发作阈值低,偶发性强直阵挛性癫痫发作,脑扩大和海马齿状hilus和分子层的异位神经元。遗传作图牵涉到Akt3,这是关键间隔内的四个候选基因之一。测序分析表明,突变体在Akt3(编码三个AKT /蛋白激酶B分子之一)中有一个错义突变,导致高度保守的蛋白激酶结构域中的非同义氨基酸取代。先前的基因敲除研究表明,尽管未观察到癫痫发作,但Akt3在产后大脑发育(包括较小的大脑)中至关重要。与Akt3(Nmf350)相反,我们发现Akt3缺失小鼠表现出升高的癫痫发作阈值。体外激酶测定显示,Akt3(Nmf350)具有更高的酶促活性,表明Akt3(Nmf350)可能增强大脑中的AKT信号传导。在Akt3(Nmf350)纯合子的齿状回中,我们还观察到磷酸化核糖体蛋白S6(AKT通路下游靶标)的免疫反应性适度增加。这些发现共同表明,Akt3(Nmf350)在大脑的特定神经元群体中赋予了AKT3活性增加,并具有独特的显性表型。 Akt3(Nmf350)小鼠为研究AKT信号在大脑中的生理作用以及潜在的癫痫新机制提供了一种新工具。

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