Michels K M, Morin L P, Moore R Y
Department of Neurology, State University of New York, Stony Brook.
Brain Res. 1990 Oct 29;531(1-2):16-24. doi: 10.1016/0006-8993(90)90753-x.
gamma-Aminobutyric acid (GABA) and exogenous benzodiazepines are thought to play a role in the neural regulation of circadian rhythms. Because binding sites for the benzodiazepines and GABAA ligands are functionally coupled as part of the GABAA/benzodiazepine receptor complex (GABAA/BZR), we analyzed the localization of GABA neurons and GABAA/BZR within 3 nuclei involved in circadian rhythm regulation using autoradiographic and immunohistochemical techniques. Glutamic acid decarboxylase-immunoreactive axons are present in the suprachiasmatic nuclei (SCN), intergeniculate leaflet (IGL), and dorsal raphe nucleus (DR). Immunoreactivity for the GABAA/BZ receptor complex is absent from the SCN and the IGL whereas the DR shows a dense, uniform immunoreactivity. Semiquantitative analysis of autoradiograms for [3H]diazepam and [3H]flunitrazepam binding reveals a moderate level of binding in the SCN, a low level of binding in the IGL, and the highest level of the DR. Based on both the pattern of benzodiazepine binding and of receptor immunoreactivity the DR would appear to be a likely target site for GABAA and benzodiazepine action. The SCN would also appear to be a possible target site. The results suggest the IGL is not a site for direct GABAA and benzodiazepine action, but do not exclude a role for the IGL in the neural circuitry mediating GABA and benzodiazepine interactions with the circadian system.
γ-氨基丁酸(GABA)和外源性苯二氮䓬类药物被认为在昼夜节律的神经调节中发挥作用。由于苯二氮䓬类药物和GABAA配体的结合位点作为GABAA/苯二氮䓬受体复合物(GABAA/BZR)的一部分在功能上相互耦合,我们使用放射自显影和免疫组织化学技术分析了参与昼夜节律调节的3个核内GABA神经元和GABAA/BZR的定位。谷氨酸脱羧酶免疫反应性轴突存在于视交叉上核(SCN)、膝间小叶(IGL)和中缝背核(DR)中。SCN和IGL中不存在GABAA/BZ受体复合物的免疫反应性,而DR显示出密集、均匀的免疫反应性。对[3H]地西泮和[3H]氟硝西泮结合的放射自显影片进行半定量分析显示,SCN中的结合水平中等,IGL中的结合水平低,DR中的结合水平最高。基于苯二氮䓬类药物结合模式和受体免疫反应性,DR似乎是GABAA和苯二氮䓬类药物作用的可能靶点。SCN似乎也是一个可能的靶点。结果表明IGL不是GABAA和苯二氮䓬类药物直接作用的位点,但不排除IGL在介导GABA和苯二氮䓬类药物与昼夜节律系统相互作用的神经回路中发挥作用。