Lu L, Ordway G A
Department of Psychiatry and Human Behavior, University of Mississippi Medical Center, Jackson 39216, USA.
Brain Res Mol Brain Res. 1997 Jul;47(1-2):267-74. doi: 10.1016/s0169-328x(97)00057-0.
The predominate subtypes of alpha2-adrenoceptors in the brain are alpha2A and alpha2C. The lack of selective ligands for these receptors hampers their functional characterization. We exploited an antisense strategy as an alternative pharmacological tool to study alpha2C-adrenoceptors. In rat striatum (caudate-putamen), alpha2-adrenoceptors were characterized using the subtype-non-selective antagonist [3H]2-(2-methoxy-1,4-benzodioxan-2-yl)-2-imidazoline ([3H]RX821002). Specific [3H]RX821002 binding was saturable and to a single class of high-affinity sites. Curves for the inhibition of [3H]RX821002 binding by the alpha2C-selective compound, prazosin, were fit best by a model assuming binding to two sites, presumably reflecting binding to alpha2A- and alpha2C-adrenoceptors. A 15-mer phosphorothioate oligodeoxynucleotide (alpha2C AS) complementary to the alpha2C-adrenoceptor mRNA, or a random sequence (RS) was administered to rats continuously for 4.5 days directly into the striatum. Compared to RS infusions, alpha2C AS infusions induced a 35% reduction in the Bmax of [3H]RX821002 in striatal homogenates (P < 0.05). Curves for the inhibition of [3H]RX821002 binding by prazosin were fit best by a model assuming a single interaction in alpha2C AS-infused rats and to a model assuming two sites in RS-infused rats. These results are consistent with the conjecture that both alpha2A- and alpha2C-adrenoceptors occur in the rat striatum and also demonstrate the feasibility of an antisense approach to examine the functional role of subtypes of alpha2C-adrenoceptors in the brain.
大脑中α2 - 肾上腺素能受体的主要亚型是α2A和α2C。缺乏针对这些受体的选择性配体阻碍了对其功能特性的研究。我们采用反义策略作为一种替代药理学工具来研究α2C - 肾上腺素能受体。在大鼠纹状体(尾状核 - 壳核)中,使用亚型非选择性拮抗剂[3H]2 - (2 - 甲氧基 - 1,4 - 苯并二恶烷 - 2 - 基)-2 - 咪唑啉([3H]RX821002)对α2 - 肾上腺素能受体进行表征。特异性[3H]RX821002结合具有饱和性且针对单一类高亲和力位点。α2C选择性化合物哌唑嗪对[3H]RX821002结合的抑制曲线,通过假设与两个位点结合的模型拟合最佳,推测这两个位点分别反映与α2A - 和α2C - 肾上腺素能受体的结合。将与α2C - 肾上腺素能受体mRNA互补的15聚体硫代磷酸酯寡脱氧核苷酸(α2C AS)或随机序列(RS)直接注入大鼠纹状体,连续给药4.5天。与注入RS相比,注入α2C AS导致纹状体匀浆中[3H]RX821002的Bmax降低35%(P < 0.05)。哌唑嗪对[3H]RX821002结合的抑制曲线,在注入α2C AS的大鼠中通过假设单一相互作用的模型拟合最佳,而在注入RS的大鼠中通过假设两个位点的模型拟合最佳。这些结果与大鼠纹状体中同时存在α2A - 和α2C - 肾上腺素能受体的推测一致,也证明了反义方法用于研究大脑中α2C - 肾上腺素能受体亚型功能作用的可行性。