The VNTR polymorphism of the human dopamine transporter (DAT1) gene affects gene expression
Open Access
- 1 February 2001
- journal article
- Published by Springer Nature in The Pharmacogenomics Journal
- Vol. 1 (2) , 152-156
- https://doi.org/10.1038/sj.tpj.6500026
Abstract
The human dopamine transporter (DAT1) gene contains a variable number of tandem repeats (VNTR) in its 3′-untranslated region (UTR). The linkage and association between the VNTR polymorphism of DAT1 and various neuropsychiatric disorders have been reported. We have determined the genomic structure of DAT1 genes containing 7-, 9-, 10-, and 11-repeat alleles and examined the effect of VNTR polymorphism in the 3′-UTR region of DAT1 on gene expression using the luciferase reporter system in COS-7 cells. Luciferase expression was significantly higher when the 3′-UTR of the DAT1 gene contained the 10-repeat allele than when it contained the 7- or 9-repeat alleles. This suggests that VNTR polymorphism affects the expression of the dopamine transporter.Keywords
This publication has 23 references indexed in Scilit:
- Variable number tandem repeat dopamine transporter gene polymorphism and Parkinson's disease: no association found.Zeitschrift für Neurologie, 1999
- Association of a polymorphism in the dopamine‐transporter gene with parkinson's diseaseMovement Disorders, 1997
- Allelic association of a dopamine transporter gene polymorphism in alcohol dependence with withdrawal seizures or deliriumBiological Psychiatry, 1997
- Hyperlocomotion and indifference to cocaine and amphetamine in mice lacking the dopamine transporterNature, 1996
- A 40-nucleotide repeat polymorphism in the human dopamine transporter geneHuman Genetics, 1993
- Neurotransmitter Transporters: Recent ProgressAnnual Review of Neuroscience, 1993
- Molecular characterization of the dopamine transporterTrends in Pharmacological Sciences, 1993
- Human dopamine transporter gene (DAT1) maps to chromosome 5p15.3 and displays a VNTRGenomics, 1992
- A human dopamine transporter cDNA predicts reduced glycosylation, displays a novel repetitive element and provides racially-dimorphic TaqI RFLPsMolecular Brain Research, 1992
- Role of Transmitter Uptake Mechanisms in Synaptic NeurotransmissionBritish Journal of Pharmacology, 1971