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脆性X智力低下基因1敲除小鼠海马CA1区锥体细胞的兴奋性增加。

Excitability is increased in hippocampal CA1 pyramidal cells of Fmr1 knockout mice.

作者信息

Luque M Angeles, Beltran-Matas Pablo, Marin M Carmen, Torres Blas, Herrero Luis

机构信息

Department of Physiology. University of Seville, Seville, Spain.

出版信息

PLoS One. 2017 Sep 20;12(9):e0185067. doi: 10.1371/journal.pone.0185067. eCollection 2017.

Abstract

Fragile X syndrome (FXS) is caused by a failure of neuronal cells to express the gene encoding the fragile mental retardation protein (FMRP). Clinical features of the syndrome include intellectual disability, learning impairment, hyperactivity, seizures and anxiety. Fmr1 knockout (KO) mice do not express FMRP and, as a result, reproduce some FXS behavioral abnormalities. While intrinsic and synaptic properties of excitatory cells in various part of the brain have been studied in Fmr1 KO mice, a thorough analysis of action potential characteristics and input-output function of CA1 pyramidal cells in this model is lacking. With a view to determining the effects of the absence of FMRP on cell excitability, we studied rheobase, action potential duration, firing frequency-current intensity relationship and action potential after-hyperpolarization (AHP) in CA1 pyramidal cells of the hippocampus of wild type (WT) and Fmr1 KO male mice. Brain slices were prepared from 8- to 12-week-old mice and the electrophysiological properties of cells recorded. Cells from both groups had similar resting membrane potentials. In the absence of FMRP expression, cells had a significantly higher input resistance, while voltage threshold and depolarization voltage were similar in WT and Fmr1 KO cell groups. No changes were observed in rheobase. The action potential duration was longer in the Fmr1 KO cell group, and the action potential firing frequency evoked by current steps of the same intensity was higher. Moreover, the gain (slope) of the relationship between firing frequency and injected current was 1.25-fold higher in the Fmr1 KO cell group. Finally, AHP amplitude was significantly reduced in the Fmr1 KO cell group. According to these data, FMRP absence increases excitability in hippocampal CA1 pyramidal cells.

摘要

脆性X综合征(FXS)是由神经细胞未能表达编码脆性X智力低下蛋白(FMRP)的基因所致。该综合征的临床特征包括智力残疾、学习障碍、多动、癫痫发作和焦虑。Fmr1基因敲除(KO)小鼠不表达FMRP,因此会重现一些FXS行为异常。虽然已经在Fmr1 KO小鼠中研究了大脑各个部位兴奋性细胞的内在特性和突触特性,但在该模型中缺乏对CA1锥体细胞动作电位特征和输入-输出功能的全面分析。为了确定FMRP缺失对细胞兴奋性的影响,我们研究了野生型(WT)和Fmr1 KO雄性小鼠海马CA1锥体细胞的基强度、动作电位持续时间、放电频率-电流强度关系以及动作电位后超极化(AHP)。从8至12周龄的小鼠制备脑片并记录细胞的电生理特性。两组细胞的静息膜电位相似。在缺乏FMRP表达的情况下,细胞具有显著更高的输入电阻,而WT和Fmr1 KO细胞组的电压阈值和去极化电压相似。基强度未观察到变化。Fmr1 KO细胞组的动作电位持续时间更长,相同强度电流阶跃诱发的动作电位放电频率更高。此外,Fmr1 KO细胞组中放电频率与注入电流之间关系的增益(斜率)高1.25倍。最后,Fmr1 KO细胞组的AHP幅度显著降低。根据这些数据,FMRP缺失会增加海马CA1锥体细胞的兴奋性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de0c/5607184/ebca10a311b2/pone.0185067.g001.jpg

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