Glutamate-Sensing Genes Are Conserved among Populations Compared to Glutamate Metabolism Genes.

IF 3.2 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Annals of Nutrition and Metabolism Pub Date : 2023-01-01 Epub Date: 2023-11-11 DOI:10.1159/000535181
Kosuke Goto, Yoko Masuzawa, Masanori Kohmura, Asuka Takumi, Haruko Takeyama, Satoru Miyazaki, Takashi Gojobori, Katsuhiko Mineta
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引用次数: 0

Abstract

Introduction: Glutamate is a representative taste molecule with an umami flavor and is a major nutrient found abundantly in nature. Furthermore, it plays a significant role in the human body as a key metabolic intermediate and neurotransmitter. Therefore, the divergence of glutamate functions among populations during their evolution is of particular interest with a hypothesis that the genetic variation can lead to understanding divergence in taste perception. To elucidate variation in glutamate applications and to deepen our understanding of taste perception, we examined the nucleotide diversity of genes associated with glutamate sensing and metabolism among human populations.

Methods: We first established 67 genes related to glutamate sensing and metabolism based on the database and literature survey. Then, for those genes, we used a population genomics approach based on ten populations over 76,156 human genomes in the gnomAD database.

Results: Statistical tests of means and medians of the minor allele frequencies did not show any significant difference among populations. However, we observed substantial differences between two functional groups, glutamate sensing and glutamate metabolism, in populations of Latino/admixed American, Ashkenazi Jewish, and Others. Interestingly, we could find significant differences between the African population and the East Asian population at the single nucleotide polymorphism level of glutamate metabolism genes, but no clear differences were noted in glutamate-sensing genes. These suggest that glutamate-sensing genes are under the functional constraint compared to glutamate metabolism genes.

Conclusion: Thus, glutamate-sensing genes and metabolism genes have a contrasting mode of the evolution, and glutamate-sensing genes are conservatively evolved, indicating its functional importance.

与谷氨酸代谢基因相比,谷氨酸感知基因在群体中是保守的。
谷氨酸是具有鲜味的代表性味觉分子,是自然界中丰富存在的主要营养物质。此外,它作为一种关键的代谢中间体和神经递质在人体中起着重要作用。因此,在种群进化过程中,谷氨酸功能的差异是一个特别有趣的假设,即遗传变异可以导致理解味觉感知的差异。为了阐明谷氨酸应用的变化并加深我们对味觉的理解,我们研究了人类群体中与谷氨酸感知和代谢相关的基因的核苷酸多样性。方法:首先在数据库和文献调查的基础上,建立了67个与谷氨酸感知和代谢相关的基因。然后,对于这些基因,我们使用了基于gnomAD数据库中超过76,156个人类基因组的10个群体的群体基因组学方法。结果:小等位基因频率的均值和中位数在人群间无统计学差异。然而,在拉丁裔/混血儿美国人、德系犹太人和其他人群中,我们观察到谷氨酸感知和谷氨酸代谢两个功能组之间存在实质性差异。有趣的是,我们发现非洲人群和东亚人群在谷氨酸代谢基因的单核苷酸多态性水平上存在显著差异,但在谷氨酸感应基因上没有明显差异。这表明与谷氨酸代谢基因相比,谷氨酸感知基因在功能上受到限制。结论:由此可见,谷氨酸感知基因与代谢基因的进化模式截然不同,谷氨酸感知基因的进化较为保守,说明其功能的重要性。
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来源期刊
Annals of Nutrition and Metabolism
Annals of Nutrition and Metabolism 医学-内分泌学与代谢
CiteScore
6.50
自引率
0.00%
发文量
55
审稿时长
6-12 weeks
期刊介绍: ''Annals of Nutrition and Metabolism'' is a leading international peer-reviewed journal for sharing information on human nutrition, metabolism and related fields, covering the broad and multidisciplinary nature of science in nutrition and metabolism. As the official journal of both the International Union of Nutritional Sciences (IUNS) and the Federation of European Nutrition Societies (FENS), the journal has a high visibility among both researchers and users of research outputs, including policy makers, across Europe and around the world.
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