首页> 外文期刊>The American Journal of Human Genetics >A Common Polymorphism in HIBCH Influences Methylmalonic Acid Concentrations in Blood Independently of Cobalamin
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A Common Polymorphism in HIBCH Influences Methylmalonic Acid Concentrations in Blood Independently of Cobalamin

机译:HIBCH中常见的多态性独立于钴胺素影响血液中的甲基丙二酸浓度

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摘要

Methylmalonic acid (MMA) is a by-product of propionic acid metabolism through the vitamin B-12 (cobalamin)-dependent enzyme methylmalonyl CoA mutase. Elevated MMA concentrations are a hallmark of several inborn errors of metabolism and indicators of cobalamin deficiency in older persons. In a genome-wide analysis of 2,210 healthy young Irish adults (median age 22 years) we identified a strong association of plasma MMA with SNPs in 3-hydroxyisobutyryl-CoA hydrolase (HIBCH, p = 8.42 x 10(-89)) and acyl-CoA synthetase family member 3 (ACSF3, p = 3.48x10(-19)). These loci accounted for 12% of the variance in MMA concentration. The most strongly associated SNP (HIBCH rs291466; c:2T>C) causes a missense change of the initiator methionine codon (minor-allele frequency = 0.43) to threonine. Surprisingly, the resulting variant, p.Met1?, is associated with increased expression of HIBCH mRNA and encoded protein. These homozygotes had, on average, 46% higher MMA concentrations than methionine-encoding homozygotes in young adults with generally low MMA concentrations (0.17 [0.14-0.21] mu mol/L; median [25th-75th quartile]). The association between MMA levels and HIBCH rs291466 was highly significant in a replication cohort of 1,481 older individuals (median age 79 years) with elevated plasma MMA concentrations (0.34 [0.24-0.51] mu mol/L; p = 4.0 x 10(-26)). In a longitudinal study of 185 pregnant women and their newborns, the association of this SNP remained significant across the gestational trimesters and in newborns. HIBCH is unique to valine catabolism. Studies evaluating flux through the valine catabolic pathway in humans should account for these variants. Furthermore, this SNP could help resolve equivocal clinical tests where plasma MMA values have been used to diagnose cobalamin deficiency.
机译:甲基丙二酸(MMA)是通过维生素B-12(钴胺素)依赖性酶甲基丙二酸CoA突变酶进行丙酸代谢的副产品。 MMA浓度升高是老年人一些先天性代谢错误和钴胺素缺乏症指标的标志。在对2,210位健康的爱尔兰年轻人(年龄中位数22岁)进行全基因组分析时,我们发现血浆MMA与3-羟基异丁酰-CoA水解酶(HIBCH,p = 8.42 x 10(-89))和酰基中的SNP密切相关-CoA合成酶家族成员3(ACSF3,p = 3.48x10(-19))。这些基因座占MMA浓度变化的12%。关联最紧密的SNP(HIBCH rs291466; c:2T> C)导致引发剂甲硫氨酸密码子(次等位基因频率= 0.43)错变为苏氨酸。令人惊讶的是,所得变体p.Met1α与HIBCH mRNA和编码蛋白的表达增加有关。在通常具有低MMA浓度(0.17 [0.14-0.21] mu mol / L;中位数[25-75分位数])的青壮年中,这些纯合子的MMA浓度平均比蛋氨酸编码纯合子高46%。 MMA水平与HIBCH rs291466之间的关联在1481名血浆MMA浓度升高(0.34 [0.24-0.51] mu mol / L; p = 4.0 x 10(-26)的年龄较大的个体的复制队列中非常重要))。在一项针对185名孕妇及其新生儿的纵向研究中,该SNP在整个妊娠中期和新生儿中的关联仍然很显着。 HIBCH是缬氨酸分解代谢所独有的。评估人类中缬氨酸分解代谢途径通量的研究应解释这些变异。此外,这种SNP可以帮助解决含糊的临床测试,其中血浆MMA值已用于诊断钴胺素缺乏症。

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