Brookhaven National Laboratory, Medical Department, Upton, New York, USA.
PLoS One. 2010 Jun 10;5(6):e11067. doi: 10.1371/journal.pone.0011067.
Human dopamine transporter gene (DAT1 or SLC6A3) has been associated with various brain-related diseases and behavioral traits and, as such, has been investigated intensely in experimental- and clinical-settings. However, the abundance of research data has not clarified the biological mechanism of DAT regulation; similarly, studies of DAT genotype-phenotype associations yielded inconsistent results. Hence, our understanding of the control of the DAT protein product is incomplete; having this knowledge is critical, since DAT plays the major role in the brain's dopaminergic circuitry. Accordingly, we reevaluated the genomic attributes of the SLC6A3 gene that might confer sensitivity to regulation, hypothesizing that its unique genomic characteristics might facilitate highly dynamic, region-specific DAT expression, so enabling multiple regulatory modes. Our comprehensive bioinformatic analyzes revealed very distinctive genomic characteristics of the SLC6A3, including high inter-individual variability of its sequence (897 SNPs, about 90 repeats and several CNVs spell out all abbreviations in abstract) and pronounced sensitivity to regulation by epigenetic mechanisms, as evident from the GC-bias composition (0.55) of the SLC6A3, and numerous intragenic CpG islands (27 CGIs). We propose that this unique combination of the genomic features and the regulatory attributes enables the differential expression of the DAT1 gene and fulfills seemingly contradictory demands to its regulation; that is, robustness of region-specific expression and functional dynamics.
人类多巴胺转运体基因(DAT1 或 SLC6A3)与各种与大脑相关的疾病和行为特征有关,因此在实验和临床环境中受到了广泛的研究。然而,大量的研究数据并没有阐明 DAT 调节的生物学机制;同样,DAT 基因型-表型关联的研究也得出了不一致的结果。因此,我们对 DAT 蛋白产物的控制的理解并不完整;了解这一点至关重要,因为 DAT 在大脑的多巴胺能电路中起着主要作用。因此,我们重新评估了可能赋予其敏感性的 SLC6A3 基因的基因组属性,假设其独特的基因组特征可能促进高度动态的、区域特异性的 DAT 表达,从而实现多种调节模式。我们全面的生物信息学分析揭示了 SLC6A3 非常独特的基因组特征,包括其序列的个体间高度变异性(897 个 SNP,约 90 个重复和几个 CNV 涵盖了摘要中的所有缩写),以及对表观遗传机制调节的明显敏感性,这从 SLC6A3 的 GC 偏倚组成(0.55)和众多内含子 CpG 岛(27 个 CGI)中可以明显看出。我们提出,这种基因组特征和调节属性的独特组合使 DAT1 基因能够实现差异表达,并满足其调节的看似矛盾的需求;即区域特异性表达和功能动态的稳健性。