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首页> 外文期刊>Human Genetics >Dopamine beta-hydroxylase: two polymorphisms in linkage disequilibrium at the structural gene DBH associate with biochemical phenotypic variation.
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Dopamine beta-hydroxylase: two polymorphisms in linkage disequilibrium at the structural gene DBH associate with biochemical phenotypic variation.

机译:多巴胺β-羟化酶:结构基因DBH的连锁不平衡中的两个多态性与生化表型变异有关。

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摘要

Levels of the enzyme dopamine beta-hydroxylase (DbetaH) in the plasma and cerebrospinal fluid (CSF) are closely related biochemical phenotypes. Both are under strong genetic control. Linkage and association studies suggest the structural gene encoding DbetaH (locus name, DBH) is a major locus influencing plasma activity of DbetaH. This study examined relationships of DBH genotype determined at two polymorphic sites (a previously described GT repeat, referred to as the DBH STR and a single-base substitution at the 3' end of DBH exon 2, named DBH*444 g/a), to CSF levels of DbetaH protein in European-American schizophrenic patients, and to plasma DbetaH activity in European-American patients with mood or anxiety disorders. We also investigated linkage disequilibrium (LD) between the polymorphisms in the pooled samples from those European-American subjects (n=104). Alleles of DBH*444 g/a were associated with differences in mean values of CSF DbetaH levels. Alleles at both polymorphisms were associated with plasma DbetaH activity. Significant LD was observed between respective alleles with similar apparent influence on biochemical phenotype. Thus, allele A3 of the DBH STR was in positive LD with DBH*444a, and both alleles were associated with lower plasma DbetaH activity. DBH STR allele A4 was in positive LD with DBH*444 g, and both alleles were associated with higher plasma DbetaH activity. The results confirm that DBH is a major quantitative trait locus for plasma DbetaH activity, and provide the first direct evidence that DBH also influences CSF DbetaH levels. Both polymorphisms examined in this study appear to be in LD with one or more functional polymorphisms that mediate the influence of allelic variation at DBH on DbetaH biochemical phenotypic variation
机译:血浆和脑脊液(CSF)中的多巴胺β-羟化酶(DbetaH)的水平是密切相关的生化表型。两者都处于强大的遗传控制之下。关联和关联研究表明,编码DbetaH的结构基因(基因座名称,DBH)是影响DbetaH血浆活性的主要基因座。这项研究检查了在两个多态性位点确定的DBH基因型之间的关系(先前描述的GT重复序列,称为DBH STR和DBH外显子2 3'端的单碱基取代,命名为DBH * 444 g / a),会影响欧美精神分裂症患者的CSF DbetaH蛋白水平,并影响患有情绪或焦虑症的欧美患者血浆DbetaH活性。我们还研究了来自那些欧美受试者(n = 104)的合并样本中多态性之间的连锁不平衡(LD)。 DBH * 444 g / a的等位基因与CSF DbetaH水平平均值的差异相关。两种多态性的等位基因均与血浆DbetaH活性相关。在各个等位基因之间观察到显着的LD,对生化表型具有相似的表观影响。因此,DBH STR的等位基因A3与DBH * 444a呈阳性LD,并且两个等位基因均与较低的血浆DbetaH活性相关。 DBH STR等位基因A4在阳性LD中为DBH * 444 g,并且两个等位基因均与较高的血浆DbetaH活性相关。结果证实DBH是血浆DbetaH活性的主要定量性状基因座,并提供了DBH也影响CSF DbetaH水平的第一个直接证据。在这项研究中检查的两个多态性似乎都与LD中的一个或多个功能性多态性有关,这些功能性多态性介导DBH的等位基因变异对DbetaH生化表型变异的影响

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