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Variation in the Human TAS1R Taste Receptor Genes

机译:人TAS1R味觉受体基因的变异

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We have performed a comprehensive evaluation of single-nucleotide polymorphisms (SNPs) and haplotypes in the human TAS1R gene family, which encodes receptors for sweet and umami tastes. Complete DNA sequences of TAS1R1-, TAS1R2-, and TAS1R3-coding regions, obtained from 88 individuals of African, Asian, European, and Native American origin, revealed substantial coding and noncoding diversity: polymorphisms are common in these genes, and polymorphic sites and SNP frequencies vary widely in human populations. The genes TAS1R1 and TAS1R3, which encode proteins that act as a dimer to form the umami (glutamate) taste receptor, showed less variation than the TAS1R2 gene, which acts as a dimer with TAS1R3 to form the sweet taste receptor. The TAS1R3 gene, which encodes a subunit common to both the sweet and umami receptors, was the most conserved. Evolutionary genetic analysis indicates that these variants have come to their current frequencies under natural selection during population growth and support the view that the coding sequence variants affect receptor function. We propose that human populations likely vary little with respect to umami perception, which is controlled by one major form of the receptor that is optimized for detecting glutamate but may vary much more with respect to sweet perception.
机译:我们已经对人TAS1R基因家族中的单核苷酸多态性(SNP)和单倍型进行了全面评估,该家族编码甜味和鲜味口味的受体。从非洲,亚洲,欧洲和美洲原住民的88个个体获得的TAS1R1,TAS1R2-和TAS1R3编码区的完整DNA序列显示出大量的编码和非编码多样性:这些基因中常见多态性,且多态性位点和SNP频率在人群中差异很大。与编码二聚体以形成鲜味(谷氨酸)味觉受体的蛋白质的基因TAS1R1和TAS1R3相比,与TAS1R3构成二聚体形成甜味受体的TAS1R2基因,变异较小。 TAS1R3基因是最保守的,它编码甜味和鲜味受体共有的一个亚基。进化遗传分析表明,这些变异体在种群增长过程中经过自然选择已达到目前的频率,并支持编码序列变异体影响受体功能的观点。我们提出,人类的鲜味知觉可能变化不大,鲜味知觉受受体的一种主要形式控制,该受体针对检测谷氨酸而进行了优化,但甜味知觉的变化可能更大。

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  • 来源
    《Chemical Senses》 |2006年第7期|599-611|共13页
  • 作者单位

    Department of Biology Kyungpook National University Daegu 702-701 Korea;

    Department of Human Genetics University of Utah Salt Lake City UT 84112 USA;

    National Institute on Deafness and Other Communication Disorders National Institutes of Health 5 Research Court Rockville MD 20850 USA;

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