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Functional analysis of the human D5 dopamine receptor missense and nonsense variants: differences in dopamine binding affinities.

机译:人类D5多巴胺受体错义和无义变异的功能分析:多巴胺结合亲和力的差异。

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The functional analysis of expressed human gene variants is important in the study of genetic susceptibility to diseases, pharmacogenetic traits and for the investigation of the human genetic diversity at the molecular level. We have performed the analysis of sequence polymorphisms in the human D5 dopamine receptor gene (DRD5) predicting missense and nonsense amino acid changes in the receptor protein. The amino acid substitutions in the human D5 dopamine receptor are: Leu88 to Phe in the putative second transmembrane domain, Ala269 to Val in the third intracellular and Pro330 to Gln in the third extracellular loops, Asn351 to Asp in the seventh transmembrane and Ser453 to Cys in the C-terminal domains and Cys335 to Stop in the third extracellular loop. The two amino acid substitutions in the transmembrane domains had an effect on agonist binding to the human D5 dopamine receptor. Asn351 to Asp resulted in an approximately 10-fold decrease in dopamine and threefold decrease in R(+)-SKF-38393 binding affinities. Leu88 to Phe resulted in a small increase in dopamine binding affinity. Antagonist binding affinities were mostly unaffected by the amino acid substitutions with the exception of Leu88 to Phe, which showed small reductions in binding affinities of SCH-23390 and risperidone. The existence of functionally different variants of the human dopamine receptors might have phenotypic consequences given their importance in central nervous system physiology and pharmacology.
机译:表达的人类基因变异的功能分析对于研究疾病的遗传易感性,药物遗传学特征以及在分子水平上研究人类遗传多样性非常重要。我们已经进行了人类D5多巴胺受体基因(DRD5)中序列多态性的分析,预测受体蛋白中的错义和无义氨基酸变化。人D5多巴胺受体中的氨基酸取代为:假定的第二个跨膜结构域中的Leu88至Phe,第三个细胞内环中的Ala269至Val和第三个细胞外环中的Pro330至Gln,第七个跨膜中的Asn351至Asp和Ser453至Cys C末端结构域中的Cys335和Cys335在第三个细胞外环中停止。跨膜结构域中的两个氨基酸取代对激动剂与人D5多巴胺受体的结合有影响。 Asn351对Asp导致多巴胺降低约10倍,R(+)-SKF-38393结合亲和力降低3倍。对Phe的Leu88导致多巴胺结合亲和力的少量增加。拮抗剂的结合亲和力几乎不受氨基酸取代的影响,Leu88与Phe除外,后者显示SCH-23390和利培酮的结合亲和力略有降低。考虑到它们在中枢神经系统生理学和药理学中的重要性,人类多巴胺受体功能上不同的变异体的存在可能会产生表型后果。

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