...
首页> 外文期刊>Molecular neurodegeneration >Disruption of the NF-κB/IκBα Autoinhibitory Loop Improves Cognitive Performance and Promotes Hyperexcitability of Hippocampal Neurons
【24h】

Disruption of the NF-κB/IκBα Autoinhibitory Loop Improves Cognitive Performance and Promotes Hyperexcitability of Hippocampal Neurons

机译:破坏NF-κB/IκBα自抑制环可改善认知能力并促进海马神经元的过度兴奋

获取原文

摘要

Background Though originally discovered in the immune system as an important mediator of inflammation, NF-κB has recently been shown to play key roles in the central nervous system, such as synaptogenesis, synaptic plasticity, and cognition. NF-κB activity is normally tightly regulated by its primary inhibitor, IκBα, through a unique autoinhibitory loop. In this study, we tested the hypothesis that the IκBα autoinhibitory loop ensures optimal levels of NF-κB activity to promote proper brain development and function. To do so, we utilized knock-in mice which possess mutations in the IκBα promoter to disrupt the autoinhibitory loop (IκBαM/M KI mice). Results Here, we show that these mutations delay IκBα resynthesis and enhance NF-κB activation in neurons following acute activating stimuli. This leads to improved cognitive ability on tests of hippocampal-dependent learning and memory but no change in hippocampal synaptic plasticity. Instead, hippocampal neurons from IκBαM/M KI mice form more excitatory and less inhibitory synapses in dissociated cultures and are hyperexcitable. This leads to increased burst firing of action potentials and the development of abnormal hypersynchronous discharges in vivo. Conclusions These results demonstrate that the IκBα autoinhibitory loop is critical for titrating appropriate levels of endogenous NF-κB activity to maintain proper neuronal function.
机译:背景技术尽管最初在免疫系统中发现NF-κB是炎症的重要介质,但最近已证明NF-κB在中枢神经系统中起关键作用,例如突触形成,突触可塑性和认知。 NF-κB活性通常由其主要抑制剂IκBα通过独特的自抑制环严格调控。在这项研究中,我们测试了IκBα自抑制环确保最佳水平的NF-κB活性以促进适当的大脑发育和功能的假设。为此,我们利用在IκBα启动子中具有突变的敲入小鼠破坏自身抑制环(IκBαM/ M KI小鼠)。结果在这里,我们表明这些突变延迟了急性激活刺激后神经元中IκBα的再合成并增强了NF-κB的激活。这导致对海马依赖性学习和记忆测试的认知能力提高,但海马突触可塑性没有变化。相反,来自IκBαM/ M KI小鼠的海马神经元在解离的培养物中形成更多的兴奋性和更少的抑制性突触,并且是过度兴奋的。这导致体内动作电位的爆发性增加和异常超同步放电的发展。结论这些结果表明,IκBα自抑制环对于滴定适当水平的内源性NF-κB活性以维持适当的神经元功能至关重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号