Literature DB >> 10591536

Comparative pharmacological and functional analysis of the human dopamine D4.2 and D4.10 receptor variants.

V Jovanovic1, H C Guan, H H Van Tol.   

Abstract

The human dopamine D4 receptor is a D2-like receptor which is a target for most common neuroleptics. Previous investigations have shown that this receptor displays a large polymorphic variation in the third intracellular loop involving a variable number of direct imperfect tandem repeats (VNTR) of 16 amino acids. The shortest and longest repeat variants reported to date contain two and 10 repeat units (D4.2 and D4.10). No major pharmacological differences have been reported for the most common variants of this receptor (D4.2, D4.4 and D4.7), although the D4.7 was reported by us to display a slightly lower potency for dopamine in functional assays. Direct pharmacological and functional comparison of the longest and shortest variants in this study suggest no major discrepancies in pharmacological or functional profile between both receptors. Both receptors display, on average, a 15-fold and 90-fold lower potency for epinephrine and norepinephrine, respectively, compared with dopamine. We observed small increases in functional potency and affinity for dopamine and quinpirole at the D4.10 receptor variant compared with the D4.2 receptor. Our data indicate that there is no direct relationship between the length of the polymorphism and changes in pharmacology or functional activity. These findings are a suitable caution against the arbitrary pooling of D4 receptor VNTR genotypes in genetic studies, based on length.

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Year:  1999        PMID: 10591536

Source DB:  PubMed          Journal:  Pharmacogenetics        ISSN: 0960-314X


  34 in total

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5.  A family based association study of DRD4, DAT1, and 5HTT and continuous traits of attention-deficit hyperactivity disorder.

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6.  The ADHD-linked human dopamine D4 receptor variant D4.7 induces over-suppression of NMDA receptor function in prefrontal cortex.

Authors:  Luye Qin; Wenhua Liu; Kaijie Ma; Jing Wei; Ping Zhong; Kei Cho; Zhen Yan
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7.  Attention-Deficit Hyperactivity Disorder in the post-genomic era.

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8.  The genetic architecture of selection at the human dopamine receptor D4 (DRD4) gene locus.

Authors:  E Wang; Y-C Ding; P Flodman; J R Kidd; K K Kidd; D L Grady; O A Ryder; M A Spence; J M Swanson; R K Moyzis
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10.  DRD4 genotype predicts longevity in mouse and human.

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Journal:  J Neurosci       Date:  2013-01-02       Impact factor: 6.167

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