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首页> 外文期刊>Brain pathology >CDKL5 deficiency predisposes neurons to cell death through the deregulation of SMAD3 signaling
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CDKL5 deficiency predisposes neurons to cell death through the deregulation of SMAD3 signaling

机译:CDKL5缺乏通过放松SMAD3信号传导使神经元预测细胞死亡

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Abstract CDKL5 deficiency disorder (CDD) is a rare encephalopathy characterized by early onset epilepsy and severe intellectual disability. CDD is caused by mutations in the X‐linked cyclin‐dependent kinase‐like 5 ( CDKL5 ) gene, a member of a highly conserved family of serine‐threonine kinases. Only a few physiological substrates of CDKL5 are currently known, which hampers the discovery of therapeutic strategies for CDD. Here, we show that SMAD3, a primary mediator of TGF‐β action, is a direct phosphorylation target of CDKL5 and that CDKL5‐dependent phosphorylation promotes SMAD3 protein stability. Importantly, we found that restoration of the SMAD3 signaling through TGF‐β1 treatment normalized defective neuronal survival and maturation in Cdkl5 knockout (KO) neurons. Moreover, we demonstrate that Cdkl5 KO neurons are more vulnerable to neurotoxic/excitotoxic stimuli. In vivo treatment with TGF‐β1 prevents increased NMDA‐induced cell death in hippocampal neurons from Cdkl5 KO mice, suggesting an involvement of the SMAD3 signaling deregulation in the neuronal susceptibility to excitotoxic injury of Cdkl5 KO mice. Our finding reveals a new function for CDKL5 in maintaining neuronal survival that could have important implications for susceptibility to neurodegeneration in patients with CDD.
机译:摘要CDK15缺陷障碍(CDD)是一种罕见的脑病,其特征是早期发病癫痫和严重的智力残疾。 CDD是由X型环蛋白依赖性激酶样5(CDK15)基因的突变引起的,该丝氨酸苏氨酸激酶的高度保守的家庭成员。目前只知道CDKL5的一些生理基板,这妨碍了发现CDD的治疗策略。这里,我们表明SMAD3是TGF-β作用的主要介体,是CDK15的直接磷酸化靶标,并且CDKL5依赖性磷酸化促进SMAD3蛋白稳定性。重要的是,我们发现通过TGF-β1治疗恢复SMAD3信号传导归一化缺陷的神经元存活和CDKL5敲除(KO)神经元的成熟。此外,我们证明CDKL5 KO神经元更容易受神经毒性/兴奋毒性刺激的影响。体内用TGF-β1进行治疗,防止来自CDKL5 KO小鼠的海马神经元中的NMDA诱导的细胞死亡,表明SMAD3信号管损伤在CDKL5 KO小鼠的兴奋毒性损伤中的作用。我们的发现揭示了CDKL5在维持神经元存活方面的新功能,这可能对CDD患者对神经变性的易感性具有重要意义。

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