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Glycogen synthase kinase-3 inhibitors reverse deficits in long-term potentiation and cognition in fragile X mice

机译:糖原合酶激酶-3抑制剂逆转脆弱X小鼠长期增强和认知的缺陷

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Background Identifying feasible therapeutic interventions is crucial for ameliorating the intellectual disability and other afflictions of fragile X syndrome (FXS), the most common inherited cause of intellectual disability and autism. Hippocampal glycogen synthase kinase-3 (GSK3) is hyperactive in the mouse model of FXS (FX mice), and hyperactive GSK3 promotes locomotor hyperactivity and audiogenic seizure susceptibility in FX mice, raising the possibility that specific GSK3 inhibitors may improve cognitive processes. Methods We tested if specific GSK3 inhibitors improve deficits in N-methyl-D-aspartate receptor-dependent long-term potentiation at medial perforant path synapses onto dentate granule cells and dentate gyrus-dependent cognitive behavioral tasks. Results GSK3 inhibitors completely rescued deficits in long-term potentiation at medial perforant path-dentate granule cells synapses in FX mice. Furthermore, synaptosomes from the dentate gyrus of FX mice displayed decreased inhibitory serine-phosphorylation of GSK3β compared with wild-type littermates. The potential therapeutic utility of GSK3 inhibitors was further tested on dentate gyrus-dependent cognitive behaviors. In vivo administration of GSK3 inhibitors completely reversed impairments in several cognitive tasks in FX mice, including novel object detection, coordinate and categorical spatial processing, and temporal ordering for visual objects. Conclusions These findings establish that synaptic plasticity and cognitive deficits in FX mice can be improved by intervention with inhibitors of GSK3, which may prove therapeutically beneficial in FXS.
机译:背景技术确定可行的治疗干预措施对于改善智力障碍和脆弱性X综合征(FXS)的其他疾病至关重要,而脆弱性X综合征是智力障碍和自闭症最常见的遗传原因。海马糖原合酶激酶3(GSK3)在FXS(FX小鼠)的小鼠模型中活跃,而过度活跃的GSK3促进FX小鼠的运动过度活跃和音源性癫痫发作易感性,从而增加了特定GSK3抑制剂可能改善认知过程的可能性。方法我们测试了特定的GSK3抑制剂是否能改善内侧穿孔路径突触到齿状颗粒细胞和齿状回依赖的认知行为任务时,N-甲基-D-天冬氨酸受体依赖性长期增强的缺陷。结果GSK3抑制剂完全消除了FX小鼠内侧穿孔路径齿状颗粒突触的长期增强能力。此外,与野生型同窝仔相比,FX小鼠齿状回的突触小体显示出抑制性的GSK3β丝氨酸磷酸化。 GSK3抑制剂的潜在治疗作用在齿状回依赖的认知行为上进行了进一步测试。 GSK3抑制剂的体内给药可以完全逆转FX小鼠在一些认知任务中的损伤,包括新颖的物体检测,坐标和分类空间处理以及视觉物体的时间排序。结论这些发现表明,通过干预GSK3抑制剂可以改善FX小鼠的突触可塑性和认知缺陷,这可能证明对FXS有治疗作用。

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