DISRUPTION OF POTENTIAL ALPHA-HELIX IN THE G-LOOP OF THE GUINEA-PIG 5-HYDROXYTRYPTAMINE(2) RECEPTOR DOES NOT PREVENT RECEPTOR COUPLING TO PHOSPHOINOSITIDE HYDROLYSIS

被引:0
作者
WATTS, SW
COHEN, ML
MOONEY, PQ
JOHNSON, BG
SCHOEPP, DD
BAEZ, M
机构
[1] ELI LILLY & CO, LILLY RES LAB, DEPT CARDIOVASC PHARMACOL 0821, INDIANAPOLIS, IN 46285 USA
[2] INDIANA UNIV, DEPT PHARMACOL & TOXICOL, INDIANAPOLIS, IN USA
关键词
GUINEA PIG; 5-HYDROXYTRYPTAMINE RECEPTOR; PHOSPHOINOSITIDE HYDROLYSIS; RAT;
D O I
暂无
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Heterogeneity of the 5-hydroxytryptamine(2) (5HT(2)) receptor across species has been implicated in several pharmacological and physiological studies. Although 5-HT2 receptors in the rat have been linked to increases in phosphoinositide (PI) hydrolysis, little evidence exists to support the association of guinea pig 5-HT2 receptors with PI hydrolysis, the second messenger generally linked with 5-HT2 receptors. In the present study, we have taken a molecular and biochemical approach to determining whether species differences in brain 5-HT2 receptors exist between rat and guinea pig. First, we isolated partial cortical 5-HT2 receptor cDNA clones that encompassed the third intracellular loop, a receptor area putatively important in receptor-effector coupling. The amino acid sequences deduced from the cDNA clones for rat and guinea pig brain 5-HT2 receptor were 97% homologous. However, the guinea pig 5-HT2 receptor had two tandem substitutions that disrupted a potential alpha helix in the region of the third cytoplasmic loop, which theoretically could alter the intracellular coupling of the guinea pig cortical 5-HT2 receptor. Because of these molecular differences, we examined further the pharmacological activation of the brain 5HT, receptor from guinea pig. 5-HT and the 5-HT2 receptor agonist alpha-methyl-5-HT increased PI hydrolysis in guinea pig cortical slices whereas the 5-HT1C-receptor agonist 5-methyltryptamine was significantly less potent. In addition, the 5-HT2 receptor antagonists LY53857, ketanserin, and spiperone blocked 5-HT-stimulated PI hydrolysis. These pharmacological data suggested that activation of the 5-HT2 receptor in guinea pig cortical slices was associated with Pl hydrolysis. Thus, although areas of the guinea pig brain 5-HT2 receptor that influence receptor-effector coupling were different from the rat, such differences were not critical to receptor-effector coupling because, as in the rat, guinea pig brain 5-HT2 receptors were also coupled to PI hydrolysis.
引用
收藏
页码:934 / 943
页数:10
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