Sinkkonen Saku T, Lüscher Bernhard, Lüddens Hartmut, Korpi Esa R
Department of Pharmacology and Clinical Pharmacology, University of Turku, Turku, Finland.
Neurochem Int. 2004 Jun;44(7):539-47. doi: 10.1016/j.neuint.2003.08.008.
To image the possible alterations in brain regional GABAA receptor subtype properties in a genetic animal model of human anxiety, mice heterozygous for the deletion of GABAA receptor gamma2 subunit (gamma2+/-) were studied using ligand autoradiographic assays on brain cryostat sections. The [35S]TBPS binding assay was designed to reveal impaired GABA and channel site coupling shown to be more prominent in recombinant alpha1/6beta3 than in alpha1/2beta3gamma2 or beta2 subunit-containing GABAA receptors expressed in HEK 293 cells. Increased GABA-insensitive [35 S]TBPS binding in the gamma2+/- mouse brains was evident in the cerebral cortex and in subcortical regions, the alterations being regionally similar to the loss of gamma2 subnunit-dependent benzodiazepine (BZ) sites as revealed by [3H]Ro 15-4513 autoradiography. As the gamma2 subunit protein is needed for synaptic clustering of GABAA receptors, these results indicate that the extrasynaptic alphabeta3 receptors can be visualized in vitro as atypical GABA-insensitive [35S]TBPS binding sites. The results suggest that GABAAergic synaptic inhibition is widely decreased in the brains of anxiety-prone gamma2+/- mice, while extrasynaptic GABAA receptors are increased. These autoradiographic imaging findings further demonstrate the need to develop GABAA receptor subtype-selective in vivo ligands to aid in assessing the contributions of various subcellular receptor populations in anxious and other patient groups.
为了在人类焦虑症的基因动物模型中成像大脑区域GABAA受体亚型特性的可能改变,我们使用脑冷冻切片上的配体放射自显影分析方法,对GABAA受体γ2亚基缺失的杂合小鼠(γ2+/-)进行了研究。[35S]TBPS结合分析旨在揭示GABA和通道位点偶联受损的情况,研究表明,在重组α1/6β3中,这种受损情况比在HEK 293细胞中表达的含α1/2β3γ2或β2亚基的GABAA受体中更为突出。在γ2+/-小鼠大脑的大脑皮层和皮层下区域,明显存在对GABA不敏感的[35S]TBPS结合增加的情况,这种改变在区域上类似于[3H]Ro 15-4513放射自显影所揭示的γ2亚基依赖性苯二氮䓬(BZ)位点的丧失。由于GABAA受体的突触聚集需要γ2亚基蛋白,这些结果表明,突触外αβ3受体在体外可表现为非典型的对GABA不敏感的[35S]TBPS结合位点。结果表明,在易焦虑的γ2+/-小鼠大脑中,GABAA能突触抑制广泛降低,而突触外GABAA受体增加。这些放射自显影成像结果进一步表明,需要开发GABAA受体亚型选择性的体内配体,以帮助评估各种亚细胞受体群体在焦虑症患者及其他患者群体中的作用。