首页> 美国卫生研究院文献>The Journal of Neuroscience >Rescue of Learning and Memory Deficits in the Human Nonsyndromic Intellectual Disability Cereblon Knock-Out Mouse Model by Targeting the AMP-Activated Protein Kinase–mTORC1 Translational Pathway
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Rescue of Learning and Memory Deficits in the Human Nonsyndromic Intellectual Disability Cereblon Knock-Out Mouse Model by Targeting the AMP-Activated Protein Kinase–mTORC1 Translational Pathway

机译:通过靶向AMP激活的蛋白激酶-mTORC1的翻译途径来挽救人类非综合征性智力障碍脑卒中小鼠模型中的学习和记忆障碍。

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摘要

A homozygous nonsense mutation in the cereblon (CRBN) gene results in autosomal recessive, nonsyndromic intellectual disability that is devoid of other phenotypic features, suggesting a critical role of CRBN in mediating learning and memory. In this study, we demonstrate that adult male Crbn knock-out (CrbnKO) mice exhibit deficits in hippocampal-dependent learning and memory tasks that are recapitulated by focal knock-out of Crbn in the adult dorsal hippocampus, with no changes in social or repetitive behavior. Cellular studies identify deficits in long-term potentiation at Schaffer collateral CA1 synapses. We further show that Crbn is robustly expressed in the mouse hippocampus and CrbnKO mice exhibit hyperphosphorylated levels of AMPKα (Thr172). Examination of processes downstream of AMP-activated protein kinase (AMPK) finds that CrbnKO mice have a selective impairment in mediators of the mTORC1 translation initiation pathway in parallel with lower protein levels of postsynaptic density glutamatergic proteins and higher levels of excitatory presynaptic markers in the hippocampus with no change in markers of the unfolded protein response or autophagy pathways. Acute pharmacological inhibition of AMPK activity in adult CrbnKO mice rescues learning and memory deficits and normalizes hippocampal mTORC1 activity and postsynaptic glutamatergic proteins without altering excitatory presynaptic markers. Thus, this study identifies that loss of Crbn results in learning, memory, and synaptic defects as a consequence of exaggerated AMPK activity, inhibition of mTORC1 signaling, and decreased glutamatergic synaptic proteins. Thus, CrbnKO mice serve as an ideal model of intellectual disability to further explore molecular mechanisms of learning and memory.>SIGNIFICANCE STATEMENT Intellectual disability (ID) is one of the most common neurodevelopmental disorders. The cereblon (CRBN) gene has been linked to autosomal recessive, nonsyndromic ID, characterized by an intelligence quotient between 50 and 70 but devoid of other phenotypic features, making cereblon an ideal protein for the study of the fundamental aspects of learning and memory. Here, using the cereblon knock-out mouse model, we show that cereblon deficiency disrupts learning, memory, and synaptic function via AMP-activated protein kinase hyperactivity, downregulation of mTORC1, and dysregulation of excitatory synapses, with no changes in social or repetitive behaviors, consistent with findings in the human population. This establishes the cereblon knock-out mouse as a model of pure ID without the confounding behavioral phenotypes associated with other current models of ID.
机译:大脑(CRBN)基因的纯合性无意义突变导致常染色体隐性,非综合征性智力残疾,该残疾无其他表型特征,提示CRBN在介导学习和记忆中起关键作用。在这项研究中,我们证明了成年雄性Crbn敲除(Crbn KO )小鼠在海马依赖性学习和记忆任务中表现出缺陷,而成年背侧海马中的Crbn局灶性敲除又证明了这一缺陷,但社交或重复行为没有变化。细胞研究发现Schaffer附带的CA1突触在长期增强中存在缺陷。我们进一步表明,Crbn在小鼠海马中表达强烈,而Crbn KO 小鼠表现出AMPKα(Thr172)的高磷酸化水平。对AMP激活的蛋白激酶(AMPK)下游过程的研究发现,Crbn KO 小鼠在mTORC1翻译起始途径的介质中具有选择性损伤,与较低的突触后密度谷氨酸能蛋白水平和较高的蛋白水平平行水平的兴奋性突触前标记水平,未折叠的蛋白反应或自噬途径的标记没有变化。急性药理抑制成年Crbn KO 小鼠的AMPK活性可挽救学习和记忆障碍,并使海马mTORC1活性和突触后谷氨酸能蛋白正常化,而不会改变兴奋性突触前标记。因此,这项研究确定了Crbn的丧失会导致学习,记忆和突触缺陷,这是由于AMPK活性过度,mTORC1信号的抑制和谷氨酸能突触蛋白减少所致。因此,Crbn KO 小鼠可以作为智力障碍的理想模型,进一步探索学习和记忆的分子机制。>意义声明智力障碍(ID)是最常见的智力障碍之一神经发育障碍。大脑(CRBN)基因已与常染色体隐性,非综合征性ID相关联,其特征是智商在50到70之间,但没有其他表型特征,使大脑成为研究学习和记忆的基本方面的理想蛋白质。在这里,我们使用cereblon基因敲除小鼠模型,表明cereblon缺乏症会通过AMP激活的蛋白激酶过度活跃,mTORC1的下调以及兴奋性突触的失调来破坏学习,记忆和突触功能,而没有改变社交或重复性行为,与人口调查结果一致。这样就将脑卒中剔除小鼠建立为纯ID模型,而没有与其他当前ID模型相关的混淆的行为表型。

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