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Antipsychotic-induced Hdac2 transcription via NF-kappa B leads to synaptic and cognitive side effects

机译:通过NF-Kappa B的抗精神病药诱导的HDAC2转录导致突触和认知副作用

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Antipsychotic drugs remain the standard for schizophrenia treatment. Despite their effectiveness in treating hallucinations and delusions, prolonged exposure to antipsychotic medications leads to cognitive deficits in both schizophrenia patients and animal models. The molecular mechanisms underlying these negative effects on cognition remain to be elucidated. Here we demonstrate that chronic antipsychotic drug exposure increases nuclear translocation of NF-kappa B in both mouse and human frontal cortex, a trafficking event triggered via 5-HT2A-receptor-dependent downregulation of the NF-kappa B repressor I kappa B alpha. This upregulation of NF-kappa B activity led to its increased binding at the Hdac2 promoter, thereby augmenting Hdac2 transcription. Deletion of HDAC2 in forebrain pyramidal neurons prevented the negative effects of antipsychotic treatment on synaptic remodeling and cognition. Conversely, virally mediated activation of NF-kappa B signaling decreased cortical synaptic plasticity via HDAC2. Together, these observations may aid in developing therapeutic strategies to improve the outcome of schizophrenia treatment.
机译:抗精神病药仍然是精神分裂症治疗的标准。尽管它们有效地治疗幻觉和妄想,但长期暴露于抗精神病药,导致精神分裂症患者和动物模型中的认知缺陷。这些负面影响对认知的分子机制仍然待阐明。在这里,我们证明慢性抗精神病药暴露在小鼠和人额前皮质中增加了NF-Kappa B的核转位,通过NF-Kappa阻遏物I KappaBα的5-HT2A受体依赖性下调触发的贩运事件。 NF-Kappa B活性的这种上调导致HDAC2启动子的结合增加,从而增加了HDAC2转录。缺失HDAC2在前脑金字塔神经元中,防止抗精神病治疗对突触重塑和认知的负面影响。相反,通过HDAC2,在NF-Kappa B信号传导中的术语激活降低了皮质突触塑性的激活。在一起,这些观察可能有助于开发治疗策略以改善精神分裂症治疗的结果。

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