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首页> 外文期刊>Journal of Neurophysiology >GABAC receptor-mediated inhibition is altered but not eliminated in the superior colliculus of GABAC rho1 knockout mice.
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GABAC receptor-mediated inhibition is altered but not eliminated in the superior colliculus of GABAC rho1 knockout mice.

机译:GABAC受体介导的抑制作用被改变,但在GABAC rho1基因敲除小鼠的上丘中并未消除。

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GABA(C) receptors (GABA(C)Rs) are widely expressed in the mammalian subcortical visual system, particularly in the retina and superior colliculus (SC). GABA(C)Rs are composed of specific rho1-3 subunits the expression of which varies among visual structures. Thus rho1 subunits are most abundant in retina, and their loss eliminates GABA(C)R expression and function. In the SC, rho2 subunit expression may be equal to or stronger than rho1 subunit expression; however, results across studies vary considerably. To more directly assess the expression of GABA(C)R subunits, we characterized inhibition in the SC of wild-type (WT) and GABA(C) rho1 Null mice that lack expression of GABA(C) rho1 subunits. We used whole cell patch-clamp recordings and evaluated GABA(C)R-mediated modulation of electrically evoked post synaptic currents using either agonists or antagonists in WT mice. In GABA(C) rho1 Null stratum griseum superficiale (SGS) cells, inhibitory postsynaptic currents were shorter in duration and their excitatory postsynaptic currents (EPSCs) were longer, indicating that a slow GABA(C)R-mediated inhibitory component was reduced in each case. In contrast to retina, GABA(C)R-mediated currents in the SC were altered but not eliminated in GABA(C) rho1 Null mice. In the majority of SC cells in GABA(C) rho1 Null mice, GABA(C)R activation could still be induced to alter EPSC peak amplitudes in putative interneurons and in many projection neurons. These results, compared with previously published data, indicate a fundamental difference between retina and SC in the control of GABA(C)R expression and subunit composition.
机译:GABA(C)受体(GABA(C)Rs)在哺乳动物的皮质下视觉系统中,尤其是在视网膜和上丘(SC)中广泛表达。 GABA(C)Rs由特定的rho1-3亚基组成,其表达在视觉结构之间有所不同。因此rho1亚基在视网膜中最丰富,其丢失消除了GABA(C)R的表达和功能。在SC中,rho2亚基表达可以等于或强于rho1亚基表达;但是,各个研究的结果差异很大。为了更直接地评估GABA(C)R亚基的表达,我们表征了缺乏GABA(C)rho1亚基表达的野生型(WT)和GABA(C)rho1 Null小鼠在SC中的抑制作用。我们使用全细胞膜片钳录音并评估WT小鼠中激动剂或拮抗剂的GABA(C)R介导的电诱发突触后电流的调制。在GABA(C)rho1浅表层灰质浅层(SGS)细胞中,抑制性突触后电流持续时间较短,而它们的兴奋性突触后电流(EPSC)较长,这表明每种慢GABA(C)R介导的抑制成分均降低了。案件。与视网膜相反,SC中的GABA(C)R介导的电流被改变,但在GABA(C)rho1 Null小鼠中并未消除。在GABA(C)rho1 Null小鼠的大多数SC细胞中,仍可以诱导GABA(C)R激活来改变假定的中间神经元和许多投射神经元的EPSC峰幅度。这些结果与以前发表的数据相比,表明视网膜和SC在控制GABA(C)R表达和亚基组成方面存在根本差异。

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