首页> 外文期刊>Human Genetics >Comparison of the genomic structure and variation in the two human sodium-dependent vitamin C transporters, SLC23A1 and SLC23A2.
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Comparison of the genomic structure and variation in the two human sodium-dependent vitamin C transporters, SLC23A1 and SLC23A2.

机译:比较两种人类钠依赖性维生素C转运蛋白SLC23A1和SLC23A2的基因组结构和变异。

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摘要

Vitamin C (L-ascorbic acid) is an essential co-factor for eight mammalian enzymes and quenches reactive oxygen species. Sodium-dependent vitamin C transport is mediated by two transporters, SVCT 1 and SVCT 2, encoded by SLC23A1 and SLC23A2. We characterized the genomic structures of SLC23A1 and SLC23A2, determined the extent of genetic variation and linkage disequilibrium across each gene, analyzed nucleotide diversity to estimate the effect of selective pressure, and compared sequence variation across species. In SLC23A1, the majority of single nucleotide polymorphisms (SNPs) are population-specific in either African Americans or Caucasians, including three of four non-synonymous SNPs. In contrast, most SNPs in SLC23A2 are shared between African Americans and Caucasians, and there are no non-synonymous SNPs in SLC23A2. Our analysis, combined with previous in vitro and in vivo studies, suggests that non-synonymous variation appears to be tolerated in SLC23A1 but not SLC23A2, and that this may be a consequence of different selective pressures following past gene duplication of the sodium-dependent vitamin C transporters. Genetic association studies of these two genes will need to account for the differences in haplotype structure and the population-specific variants. Our data represent a fundamental step toward the application of genetics to refining nutrient recommendations, specifically for vitamin C, and may serve as a paradigm for other vitamins.
机译:维生素C(L-抗坏血酸)是8种哺乳动物酶的必需辅助因子,可淬灭活性氧。钠依赖性维生素C的转运是由SLC23A1和SLC23A2编码的两个转运蛋白SVCT 1和SVCT 2介导的。我们表征了SLC23A1和SLC23A2的基因组结构,确定了每个基因的遗传变异和连锁不平衡的程度,分析了核苷酸多样性以估计选择性压力的影响,并比较了物种间的序列变异。在SLC23A1中,大多数单核苷酸多态性(SNP)在非裔美国人或高加索人中都是特定于人群的,包括四个非同义SNP中的三个。相反,SLC23A2中的大多数SNP在非洲裔美国人和高加索人之间共享,并且SLC23A2中没有非同义的SNP。我们的分析与先前的体外和体内研究相结合,表明在SLC23A1中可以忍受非同义变异,但在SLC23A2中却不能忍受,这可能是由于钠依赖性维生素的以往基因复制后不同选择压力导致的C转运蛋白。这两个基因的遗传关联研究将需要考虑单倍型结构和群体特异性变异的差异。我们的数据代表了遗传学在完善营养推荐(尤其是针对维生素C的建议)方面迈出的基础性步骤,并可能成为其他维生素的范例。

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