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小鼠小脑突触传递中的性别差异以及对自闭症相关Gabrb3突变的性别特异性反应。

Sex differences in cerebellar synaptic transmission and sex-specific responses to autism-linked Gabrb3 mutations in mice.

作者信息

Mercer Audrey A, Palarz Kristin J, Tabatadze Nino, Woolley Catherine S, Raman Indira M

机构信息

Northwestern University Interdepartmental Neuroscience Program, Northwestern University, Evanston, United States.

Department of Neurobiology, Northwestern University, Evanston, United States.

出版信息

Elife. 2016 Apr 14;5:e07596. doi: 10.7554/eLife.07596.

Abstract

Neurons of the cerebellar nuclei (CbN) transmit cerebellar signals to premotor areas. The cerebellum expresses several autism-linked genes, including GABRB3, which encodes GABAA receptor β3 subunits and is among the maternal alleles deleted in Angelman syndrome. We tested how this Gabrb3 m-/p+ mutation affects CbN physiology in mice, separating responses of males and females. Wild-type mice showed sex differences in synaptic excitation, inhibition, and intrinsic properties. Relative to females, CbN cells of males had smaller synaptically evoked mGluR1/5-dependent currents, slower Purkinje-mediated IPSCs, and lower spontaneous firing rates, but rotarod performances were indistinguishable. In mutant CbN cells, IPSC kinetics were unchanged, but mutant males, unlike females, showed enlarged mGluR1/5 responses and accelerated spontaneous firing. These changes appear compensatory, since mutant males but not females performed indistinguishably from wild-type siblings on the rotarod task. Thus, sex differences in cerebellar physiology produce similar behavioral output, but provide distinct baselines for responses to mutations.

摘要

小脑核(CbN)的神经元将小脑信号传递至运动前区。小脑表达多种与自闭症相关的基因,包括GABRB3,该基因编码GABAA受体β3亚基,且在天使综合征中母源等位基因缺失。我们测试了这种Gabrb3 m-/p+突变如何影响小鼠CbN的生理学,同时区分了雄性和雌性的反应。野生型小鼠在突触兴奋、抑制和内在特性方面表现出性别差异。相对于雌性,雄性CbN细胞的突触诱发的mGluR1/5依赖性电流较小,浦肯野细胞介导的抑制性突触后电流(IPSCs)较慢,自发放电率较低,但在旋转棒试验中的表现没有差异。在突变的CbN细胞中,IPSC动力学没有变化,但与雌性不同,突变的雄性表现出mGluR1/5反应增强和自发放电加速。这些变化似乎具有代偿性,因为在旋转棒任务中,突变的雄性而非雌性与野生型同胞的表现没有差异。因此,小脑生理学中的性别差异产生了相似的行为输出,但为对突变的反应提供了不同的基线。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0210/4878876/c7e99039b9a9/elife-07596-fig1.jpg

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