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在冬眠期间,腹侧呼吸柱 GABAaR ε-和 δ-亚基的变化介导了对乙醇和戊巴比妥致抑郁的抵抗。

Changes in ventral respiratory column GABAaR ε- and δ-subunits during hibernation mediate resistance to depression by EtOH and pentobarbital.

机构信息

Neuroscience Training Program, University of Wisconsin, Madison, Wisconsin, USA.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2011 Feb;300(2):R272-83. doi: 10.1152/ajpregu.00607.2010. Epub 2010 Nov 17.

Abstract

During hibernation in the 13-lined ground squirrel, Ictidomys tridecemlineatus, the cerebral cortex is electrically silent, yet the brainstem continues to regulate cardiorespiratory function. Previous work showed that neurons in slices through the medullary ventral respiratory column (VRC) but not the cortex are insensitive to high doses of pentobarbital during hibernation, leading to the hypothesis that GABA(A) receptors (GABA(A)R) in the VRC undergo a seasonal modification in subunit composition. To test whether alteration of GABA(A)R subunits are responsible for hibernation-associated pentobarbital insensitivity, we examined an array of subunits using RT-PCR and Western blots and identified changes in ε- and δ-subunits in the medulla but not the cortex. Using immunohistochemistry, we confirmed that during hibernation, the expression of ε-subunit-containing GABA(A)Rs nearly doubles in the VRC. We also identified a population of δ-subunit-containing GABA(A)Rs adjacent to the VRC that were differentially expressed during hibernation. As δ-subunit-containing GABA(A)Rs are particularly sensitive to ethanol (EtOH), multichannel electrodes were inserted in slices of medulla and cortex from hibernating squirrels and EtOH was applied. EtOH, which normally inhibits neuronal activity, excited VRC but not cortical neurons during hibernation. This excitation was prevented by bicuculline pretreatment, indicating the involvement of GABA(A)Rs. We propose that neuronal activity in the VRC during hibernation is unaffected by pentobarbital due to upregulation of ε-subunit-containing GABA(A)Rs on VRC neurons. Synaptic input from adjacent inhibitory interneurons that express δ-subunit-containing GABA(A)Rs is responsible for the excitatory effects of EtOH on VRC neurons during hibernation.

摘要

在十三线地松鼠的冬眠期间,大脑皮层处于电静止状态,但脑干仍继续调节心肺功能。先前的工作表明,在冬眠期间,通过延髓腹侧呼吸柱(VRC)切片的神经元对戊巴比妥的高剂量不敏感,而不是皮层,这导致了 GABA(A) 受体(GABA(A)R)在 VRC 中组成亚基发生季节性变化的假说。为了测试 GABA(A)R 亚基的改变是否是冬眠相关戊巴比妥不敏感的原因,我们使用 RT-PCR 和 Western blot 检查了一系列亚基,并在延髓中发现了 ε-和 δ-亚基的变化,但在皮层中没有发现。通过免疫组织化学,我们证实了在冬眠期间,VRC 中 ε-亚基包含的 GABA(A)R 的表达几乎增加了一倍。我们还鉴定了 VRC 附近的一组 δ-亚基包含的 GABA(A)R,它们在冬眠期间的表达不同。由于 δ-亚基包含的 GABA(A)R 对乙醇(EtOH)特别敏感,因此将多通道电极插入冬眠松鼠的延髓和皮层切片中,并施加 EtOH。EtOH 通常抑制神经元活动,但在冬眠期间兴奋 VRC 但不兴奋皮质神经元。用 bicuculline 预处理可防止这种兴奋,表明 GABA(A)R 的参与。我们提出,由于 VRC 神经元上的 ε-亚基包含的 GABA(A)R 的上调,冬眠期间 VRC 中的神经元活动不受戊巴比妥的影响。表达 δ-亚基包含的 GABA(A)R 的相邻抑制性中间神经元的突触输入负责 EtOH 在冬眠期间对 VRC 神经元的兴奋作用。

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