首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Loss of FKBP5 Affects Neuron Synaptic Plasticity: An Electrophysiology Insight
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Loss of FKBP5 Affects Neuron Synaptic Plasticity: An Electrophysiology Insight

机译:FKBP5的丧失影响神经元突触塑性:电生理洞察力

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摘要

FKBP5 (FKBP51) is a glucocorticoid receptor (GR) binding protein, which acts as a co-chaperone of heat shock protein 90 (HSP90) and negatively regulates GR. Its association with mental disorders has been identified, but its function in disease development is largely unknown. Long-term potentiation (LTP) is a functional measurement of neuronal connection and communication, and is considered one of the major cellular mechanisms that underlies learning and memory, and is disrupted in many mental diseases. In this study, a reduction in LTP in Fkbp5 knockout (KO) mice was observed when compared to WT mice, which correlated with changes to the glutamatergic and GABAergic signaling pathways. The frequency of mEPSCs was decreased in KO hippocampus, indicating a decrease in excitatory synaptic activity. While no differences were found in levels of glutamate between KO and WT, a reduction was observed in the expression of excitatory glutamate receptors (NMDAR1, NMDAR2B and AMPAR), which initiate and maintain LTP. The expression of the inhibitory neurotransmitter GABA was found to be enhanced in Fkbp5 KO hippocampus. Further investigation suggested that increased expression of GAD65, but not GAD67, accounted for this increase. Additionally, a functional GABAergic alteration was observed in the form of increased mIPSC frequency in the KO hippocampus, indicating an increase in presynaptic GABA release. Our findings uncover a novel role for Fkbp5 in neuronal synaptic plasticity and highlight the value of Fkbp5 KO as a model for studying its role in neurological function and disease development. (C) 2019 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:FKBP5(FKBP51)是一种糖皮质激素受体(GR)结合蛋白,其充当热休克蛋白90(HSP90)的共伴侣,并负调节GR。其与精神障碍的关联已经确定,但其在疾病发展中的功能主要是未知的。长期电压(LTP)是神经元连接和通信的功能测量,被认为是基于学习和记忆的主要细胞机制之一,并且在许多精神疾病中被破坏。在该研究中,与WT小鼠相比,观察到FKBP5敲除(KO)小鼠中的LTP的降低,与谷氨酸胶和加法加语信号传导途径的变化相关。 KO海马的MEPSCs频率降低,表明兴奋性突触活动的降低。虽然在KO和WT之间的谷氨酸水平中没有发现差异,但在引发和维持LTP的兴奋性谷氨酸受体(NMDAR1,NMDAR2B和AMPAR)中观察到还原。发现抑制性神经递质GABA的表达在FKBP5 KO海马中得到增强。进一步调查表明,增加了GAD65,但不是GAD67的表达增加,占这一增加。另外,在KO海马中增加MIPSC频率的形式观察到官能性GABA能改变,表明突触前GABA释放的增加。我们的研究结果发现了FKBP5在神经元突触可塑性中的一种新颖作用,并突出了FKBP5 KO的价值作为研究其在神经功能和疾病发展中作用的模型。 (c)2019年IBRO。 elsevier有限公司出版。保留所有权利。

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    Chinese Acad Med Sci Inst Lab Anim Sci Comparat Med Ctr Beijing 100021 Peoples R China;

    Chinese Acad Med Sci Inst Lab Anim Sci Comparat Med Ctr Beijing 100021 Peoples R China;

    Chinese Acad Med Sci Inst Lab Anim Sci Comparat Med Ctr Beijing 100021 Peoples R China;

    Chinese Acad Med Sci Inst Lab Anim Sci Comparat Med Ctr Beijing 100021 Peoples R China;

    Chinese Acad Med Sci Inst Lab Anim Sci Comparat Med Ctr Beijing 100021 Peoples R China;

    Chinese Acad Med Sci Inst Lab Anim Sci Comparat Med Ctr Beijing 100021 Peoples R China;

    Chinese Acad Med Sci Inst Lab Anim Sci Comparat Med Ctr Beijing 100021 Peoples R China;

    Indiana Univ Sch Med Dept Med Indianapolis IN 46202 USA;

    Indiana Univ Purdue Univ Purdue Sch Sci Dept Psychol Indianapolis IN 46202 USA;

    Anhui Agr Univ Coll Life Sci Hefei 230036 Anhui Peoples R China;

    Chinese Acad Sci Inst Chem Key Lab Analyt Chem Living Biosyst Beijing 100190 Peoples R China;

    Chinese Acad Sci Inst Chem Key Lab Analyt Chem Living Biosyst Beijing 100190 Peoples R China;

    Indiana Univ Sch Med Dept Pediat Herman B Wells Ctr Pediat Res Indianapolis IN 46202 USA;

    Indiana Univ Sch Med Dept Med Indianapolis IN 46202 USA;

    Chinese Acad Med Sci Inst Lab Anim Sci Comparat Med Ctr Beijing 100021 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    Fkbp5 KO; GABAergic; glutamatergic; LTP; synaptic plasticity;

    机译:fkbp5 ko;gabaergic;glutamatergic;ltp;突触可塑性;

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