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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Functional importance of the carboxyl tail cysteine residues in the human D1 dopamine receptor.
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Functional importance of the carboxyl tail cysteine residues in the human D1 dopamine receptor.

机译:人D1多巴胺受体中羧基尾半胱氨酸残基的功能重要性。

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摘要

To assess the importance of the cysteine residues Cys347 and Cys351 in the carboxylic tail in the human D1 dopamine receptor, seven mutant receptors were constructed by PCR. The pharmacological and functional properties of the wild-type and mutant receptors were assessed following transient expression in COS-7 cells. Affinities for [3H]SCH 23390 of mutant S347 (Cys347-->Gly), T348 (Tyr348-->stop), S351 (Cys351-->Gly), T351 (Cys351-->stop), T352 (Pro352-->stop), and S347/S351 (Cys347-->Gly and Cys351-->Gly) were similar to that of wild-type receptor, whereas the expression levels were reduced up to 80%. The potency of dopaminergic antagonists for these mutant receptors was very similar to that of the wild-type receptor. However, mutant T347 (Cys347-->stop) showed a 15-25-fold reduced affinity for the antagonists SCH 23390, (+)-butaclamol, and cis-flupentixol, thus not allowing radioligand analysis. Wild-type and mutant receptors responded dose-dependently with similar potency to dopamine and SKF 38393 with an increased adenylyl cyclase activity. However, mutant receptors with the Cys347 residue changed or removed displayed a diminished ability to activate adenylyl cyclase. Dopamine preexposure desensitized wild-type and mutant S351 receptors. However, mutant receptors with Cys347 replaced or the distal part of the carboxyl tail removed were unable to desensitize. Thus, Cys347 in the cytoplasmic tail of the human D1 dopamine receptor is important for the receptor in maintaining the conformation for antagonist binding, to play a crucial role in activation of adenylyl cyclase, and to be essential for agonist-induced desensitization.
机译:为了评估人D1多巴胺受体的羧基尾中半胱氨酸残基Cys347和Cys351的重要性,通过PCR构建了七个突变受体。在COS-7细胞中瞬时表达后,评估了野生型和突变型受体的药理和功能特性。突变体S347(Cys347-> Gly),T348(Tyr348->终止),S351(Cys351-> Gly),T351(Cys351->终止),T352(Pro352-- >终止),S347 / S351(Cys347-> Gly和Cys351-> Gly)与野生型受体相似,但表达水平降低了80%。多巴胺能拮抗剂对这些突变受体的效力与野生型受体的效力非常相似。但是,突变体T347(Cys347->终止位点)显示出与拮抗剂SCH 23390,(+)-丁ac醇和顺式氟喷醇的亲和力降低了15-25倍,因此无法进行放射性配体分析。野生型和突变型受体与多巴胺和SKF 38393具有相似的效价剂量依赖性反应,并具有增强的腺苷酸环化酶活性。但是,Cys347残基被更改或删除的突变受体显示出激活腺苷酸环化酶的能力降低。多巴胺预暴露使野生型和突变型S351受体脱敏。但是,用Cys347取代的突变受体或除去羧基尾部的远端部分都无法使其脱敏。因此,人D1多巴胺受体的胞质尾中的Cys347对于该受体在维持拮抗剂结合的构象,在腺苷酸环化酶的活化中起关键作用以及对于激动剂诱导的脱敏作用至关重要是重要的。

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