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发育中的 GABA 能传入在脆性 X 综合征小鼠成年海马齿状回神经元早期成熟过程中并未改变。

Development of GABAergic Inputs Is Not Altered in Early Maturation of Adult Born Dentate Granule Neurons in Fragile X Mice.

机构信息

Department of Physiology, Feinberg School of Medicine, Northwestern University, Chicago, IL 60611.

Department of Neurobiology, Weinberg College of Arts and Sciences, Northwestern University, Evanston, IL 60208.

出版信息

eNeuro. 2018 Dec 3;5(6). doi: 10.1523/ENEURO.0137-18.2018. eCollection 2018 Nov-Dec.

Abstract

Fragile X syndrome (FXS) is the most common form of inherited mental retardation and the most common known cause of autism. Loss of fragile X mental retardation protein (FMRP) in mice ( KO) leads to altered synaptic and circuit maturation in the hippocampus that is correlated with alterations in hippocampal-dependent behaviors. Previous studies have demonstrated that loss of FMRP increased the rate of proliferation of progenitor cells and altered their fate specification in adult KO mice. While these studies clearly demonstrate a role for FMRP in adult neurogenesis in the hippocampus, it is not known whether the functional synaptic maturation and integration of adult-born dentate granule cells (abDGCs) into hippocampal circuits is affected in KO mice. Here, we used retroviral labeling to birthdate abDGCs in KO mice which allowed us to perform targeted patch clamp recording to measure the development of synaptic inputs to these neurons at precise time points after differentiation. The frequency and amplitude of spontaneous GABAergic events increased over the first three weeks after differentiation; however, this normal development of GABAergic synapses was not altered in KO mice. Furthermore, the relatively depolarized GABA reversal potential () in immature abDGCs was unaffected by loss of FMRP as was the development of dendritic arbor of the adult generated neurons. These studies systematically characterized the functional development of abDGCs during the first four weeks after differentiation and demonstrate that the maturation of GABAergic synaptic inputs to these neurons is not grossly affected by the loss of FMRP.

摘要

脆性 X 综合征(FXS)是最常见的遗传性智力障碍形式,也是最常见的自闭症病因。在小鼠中缺失脆性 X 智力低下蛋白(FMRP)(KO)会导致海马体中的突触和回路成熟发生改变,这与海马体依赖行为的改变相关。先前的研究表明,FMRP 的缺失会增加祖细胞的增殖速度,并改变其在成年 KO 小鼠中的命运特化。虽然这些研究清楚地表明 FMRP 在海马体中的成年神经发生中具有作用,但尚不清楚缺失 FMRP 是否会影响成年产生的齿状回颗粒细胞(abDGC)的功能性突触成熟和整合到海马体回路中。在这里,我们使用逆转录病毒标记来标记 KO 小鼠中的 abDGC,这使我们能够在分化后精确的时间点进行靶向膜片钳记录,以测量这些神经元的突触输入的发育情况。在分化后的前三周内,自发性 GABA 能事件的频率和幅度增加;然而,在 KO 小鼠中,这种 GABA 能突触的正常发育并没有改变。此外,不成熟的 abDGC 中相对去极化的 GABA 反转电位()不受 FMRP 缺失的影响,而成年产生的神经元的树突分支的发育也不受影响。这些研究系统地描述了分化后前四周内 abDGC 的功能发育情况,并表明这些神经元的 GABA 能突触输入的成熟不受 FMRP 缺失的显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2dc6/6325535/022da7c6e8c0/enu0061827920001.jpg

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