首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Chronic dizocilpine (MK-801) reversibly delays GABA(A) receptor maturation in cerebellar granule neurons in vitro.
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Chronic dizocilpine (MK-801) reversibly delays GABA(A) receptor maturation in cerebellar granule neurons in vitro.

机译:慢性地佐西平(MK-801)可逆性延迟体外小脑颗粒神经元的GABA(A)受体成熟。

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We investigated the effect of chronically blocking NMDA receptor stimulation to examine changes in GABA(A) receptor expression and pharmacology in cerebellar granule cells at different stages of maturation. We have previously shown that NMDA-selective glutamate receptor stimulation alters GABA(A) receptor pharmacology in cerebellar granule neurons in vitro by altering the levels of selective subunits. When NMDA receptor stimulation is blocked with MK-801 during the first week in vitro, a decrease in the alpha1, gamma2S, and gamma2L receptor subunit mRNAs occurred. When present only during the second week, changes were limited to the alpha1 and gamma2L mRNAs. Finally, if MK-801 was present during the first week and removed during the second week, these changes reversed. Whole-cell voltage-clamp recordings showed that treatment with MK-801 during either the first or second week increased the EC50 of the receptors for GABA and attenuated the potentiation mediated by flunitrazepam. Last, these properties were reversed if MK-801 was removed after the first week in vitro. Our results suggest that MK-801 reversibly inhibits GABA(A) receptor maturation by modulating receptor subunit expression and that the altered pharmacological responses appear to be dominated by changes in the levels of allosteric modulation mediated by the gamma2 receptor subunit.
机译:我们调查了慢性阻断NMDA受体刺激的作用,以检查在不同成熟阶段小脑颗粒细胞中GABA(A)受体表达和药理学的变化。我们以前已经表明,NMDA-选择性谷氨酸受体刺激通过改变选择性亚基的水平,在体外改变小脑颗粒神经元中的GABA(A)受体药理学。当在体外的第一周内用MK-801阻断NMDA受体刺激时,α1,γ2S和γ2L受体亚基mRNA的表达降低。当仅在第二周出现时,变化仅限于alpha1和gamma2L mRNA。最后,如果MK-801在第一周出现并在第二周移除,则这些变化会逆转。全细胞电压钳记录显示,在第一周或第二周内用MK-801进行治疗可增加GABA受体的EC50,并减弱氟硝西epa介导的增强作用。最后,如果在体外培养的第一周后去除了MK-801,这些特性将被逆转。我们的结果表明,MK-801可通过调节受体亚基表达可逆地抑制GABA(A)受体成熟,并且改变的药理反应似乎受γ2受体亚基介导的变构调节水平变化的控制。

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