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多巴胺对纹状体输出神经元中γ-氨基丁酸(GABA)强直电导的调节作用。

Dopamine modulation of GABA tonic conductance in striatal output neurons.

作者信息

Janssen Megan J, Ade Kristen K, Fu Zhanyan, Vicini Stefano

机构信息

Department of Physiology and Biophysics, Georgetown University School of Medicine, Washington, DC 20007, USA.

出版信息

J Neurosci. 2009 Apr 22;29(16):5116-26. doi: 10.1523/JNEUROSCI.4737-08.2009.

Abstract

We previously reported greater GABAA receptor-mediated tonic currents in D2+ striatopallidal than D1+ striatonigral medium spiny neurons (MSNs) are mediated by alpha5-subunit-containing receptors. Here, we used whole-cell recordings in slices from bacterial artificial chromosome transgenic mice to investigate the link between subunit composition, phosphorylation, and dopamine receptor activation. Whole-cell recordings in slices from delta-subunit knock-out mice demonstrate that while MSNs in wild-type mice do express delta-subunit-containing receptors, this receptor subtype is not responsible for tonic conductance observed in the acute slice preparation. We assessed the contribution of the beta1- and beta3-subunits expressed in MSNs by their sensitivity to etomidate, an agonist selective for beta2- or beta3-subunit-containing GABAA receptors. Although etomidate produced substantial tonic current in D2+ neurons, there was no effect in D1+ neurons. However, with internal PKA application or dopamine modulation, D1+ neurons expressed tonic conductance and responded to etomidate application. Our results suggest that distinct phosphorylation of beta3-subunits may cause larger tonic current in D2+ striatopallidal MSNs, and proper intracellular conditions can reveal tonic current in D1+ cells.

摘要

我们之前报道过,D2+纹状体苍白球中型多棘神经元(MSNs)中,GABAA受体介导的强直电流比D1+纹状体黑质MSNs更大,且由含α5亚基的受体介导。在此,我们利用细菌人工染色体转基因小鼠脑片的全细胞记录,来研究亚基组成、磷酸化和多巴胺受体激活之间的联系。δ亚基敲除小鼠脑片的全细胞记录表明,虽然野生型小鼠的MSNs确实表达含δ亚基的受体,但这种受体亚型并非急性脑片制备中观察到的强直电导的原因。我们通过MSNs中表达的β1和β3亚基对依托咪酯(一种对含β2或β3亚基的GABAA受体有选择性的激动剂)的敏感性,评估了它们的作用。虽然依托咪酯在D2+神经元中产生了大量强直电流,但对D1+神经元没有影响。然而,通过胞内应用蛋白激酶A(PKA)或多巴胺调节,D1+神经元表达了强直电导并对依托咪酯的应用产生反应。我们的结果表明,β3亚基的不同磷酸化可能导致D2+纹状体苍白球MSNs中产生更大的强直电流,而适当的细胞内条件可以揭示D1+细胞中的强直电流。

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