Dumont Y, Fournier A, Quirion R
Douglas Hospital Research Center, Department of Psychiatry, McGill University, Verdun, Québec, Canada H4H 1R3.
J Neurosci. 1998 Aug 1;18(15):5565-74. doi: 10.1523/JNEUROSCI.18-15-05565.1998.
The neuropeptide Y Y5 receptor subtype has generated great interest, especially regarding its possible involvement in feeding behaviors. However, its distribution and sites of expression in the mammalian brain are, in large part, unknown because of the lack of selective tools. We demonstrate in this study that specific [125I][Leu31, Pro34]PYY binding is competed in a biphasic manner by BIBP3226, a Y1 receptor antagonist, demonstrating the existence of sensitive and insensitive sites to BIBP3226. Assays performed by using [125I][Leu31,Pro34]PYY in the presence of 1 microM BIBP3226 to block the Y1 receptor subtype revealed a pharmacological profile highly similar to the cloned Y5 receptor. Moreover, results obtained with GW1229 suggest that the Y4 subtype represents only a very small proportion of the total population of NPY receptors in the rat brain. Quantitative receptor autoradiographic data revealed the discrete distribution of [125I][Leu31,Pro34]PYY/BIBP3226-insensitive Y5 sites in the rat brain, with the external plexiform layer of the olfactory bulb, the lateral septum, the anteroventral thalamic nucleus, the CA3 subfield of the ventral hippocampus, the nucleus tractus solitarius, and the area postrema being most enriched. Rather surprisingly, in the hypothalamus, a key structure modulating food intake, only low densities of Y5 binding sites were detected as well as in most other regions of the rat brain. These data suggest that the Y5 receptor protein is expressed and translated by a small percentage of hypothalamic neurons and that the effect of NPY on feeding behaviors likely is mediated by more than one class of NPY receptors. It also indicates that the Y5 receptor may be involved in other biological actions induced by NPY. Taken together, these data represent the first pharmacological demonstration of the expression and discrete localization of the Y5 receptor protein in the rat brain.
神经肽Y Y5受体亚型引起了极大关注,尤其是其可能参与进食行为方面。然而,由于缺乏选择性工具,其在哺乳动物大脑中的分布和表达位点在很大程度上尚不清楚。我们在本研究中证明,Y1受体拮抗剂BIBP3226以双相方式竞争性抑制特异性[125I][Leu31, Pro34]PYY结合,表明存在对BIBP3226敏感和不敏感的位点。在1 microM BIBP3226存在下使用[125I][Leu31,Pro34]PYY进行的实验,以阻断Y1受体亚型,揭示了与克隆的Y5受体高度相似的药理学特征。此外,GW1229的实验结果表明,Y4亚型在大鼠大脑中NPY受体总数中仅占很小比例。定量受体放射自显影数据揭示了[125I][Leu31,Pro34]PYY/BIBP3226不敏感的Y5位点在大鼠大脑中的离散分布,嗅球外丛状层、外侧隔、丘脑前腹核、腹侧海马体CA3亚区、孤束核和最后区最为丰富。相当令人惊讶的是,在调节食物摄入的关键结构下丘脑以及大鼠大脑的大多数其他区域,仅检测到低密度的Y5结合位点。这些数据表明,Y5受体蛋白由一小部分下丘脑神经元表达和翻译,并且NPY对进食行为的影响可能由不止一类NPY受体介导。这也表明Y5受体可能参与NPY诱导的其他生物学作用。综上所述,这些数据代表了Y5受体蛋白在大鼠大脑中表达和离散定位的首次药理学证明。