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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Functional characterization of a novel serotonin receptor (5-HTap2) expressed in the CNS of Aplysia californica.
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Functional characterization of a novel serotonin receptor (5-HTap2) expressed in the CNS of Aplysia californica.

机译:在加州海ly中枢神经系统中表达的新型5-羟色胺受体(5-HTap2)的功能表征。

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摘要

Serotonin has been shown to be a neuromodulator in the Aplysia californica CNS. The diversity of serotonin actions is due to the existence of several different receptor subtypes. In this study we report the cloning of a full-length cDNA, coding for a novel serotonin receptor (5-HTap2). The receptor protein bears the characteristics of G protein-coupled receptors. It shares 68% and 34% of its amino acid sequence identity with the 5-HTlym receptor from Lymnaea stagnalis and the mammalian 5-HT1A receptor, respectively. When transfected in HEK 293 cells, 5-HTap2 was negatively coupled to adenylate cyclase. Ligand binding analysis indicated that the order of potencies of various drugs for the inhibition of [3H]LSD binding was: methiothepin > metergoline > 5-CT > PAPP > 5-HT > ketanserin > NAN-190 > 8-OH-DPAT > clozapine. RT-PCR amplification of RNA isolated from different tissues indicated that this receptor is expressed in the CNS and in bag cells. The expression of 5-HTap2 restricted to the CNS suggests an important role for this receptor in the modulation of neuronal functions in Aplysia. Moreover, the high expression of 5-HTap2 in the bag cells, associated with its pharmacological profile, suggests that this receptor may be implicated in modulating the afterdischarge during the egg-laying behavior.
机译:5-羟色胺已被证明是加州鸭嘴兽中枢神经系统的一种神经调节剂。血清素作用的多样性是由于几种不同的受体亚型的存在。在这项研究中,我们报告了全长cDNA的克隆,该全长cDNA编码一种新型的血清素受体(5-HTap2)。受体蛋白具有G蛋白偶联受体的特征。它与来自胸腺雄蕊的5-HTlym受体和哺乳动物的5-HT1A受体分别具有68%和34%的氨基酸序列同一性。当在HEK 293细胞中转染时,5-HTap2与腺苷酸环化酶负偶联。配体结合分析表明,各种药物抑制[3H] LSD结合的能力的顺序为:甲硫基托平>米戈高林> 5-CT> PAPP> 5-HT>酮色林> NAN-190> 8-OH-DPAT>氯氮平。从不同组织分离的RNA的RT-PCR扩增表明,该受体在CNS和袋细胞中表达。限制中枢神经系统的5-HTap2的表达表明该受体在海兔神经元功能的调节中起重要作用。此外,5-HTap2在袋状细胞中的高表达及其药理学特征表明,该受体可能与卵生过程中的后放电调节有关。

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