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Stable carbon isotope diagnostics of mammalian metabolism, a high-resolution isotomics approach using amino acid carboxyl groups

机译:稳定的碳同位素诊断哺乳动物代谢,一种使用氨基酸羧基的高分辨率同学方法

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摘要

The carbon isotopic compositions of amino acids are increasingly measured to characterize diets and metabolic response to diets. We report a new high-resolution system to measure the stable carbon isotopic composition of carboxyl atoms within amino acids. The automated system used HPLC to separate amino acids followed by addition of ninhydrin for decarboxylation and transfer of the evolved CO2 to a stable isotope ratio mass spectrometer for δ13CCARBOXYL measurement. The ninhydrin reaction was conducted at acidic pH (1.5) and elevated temperature (160 oC) giving yields close to 100% for most common amino acids. Eight mammalian keratin samples from herbivores (kudu and caribou), omnivores (humans) and carnivores (bowhead and humpback zooplanktivorous whales) were analysed with this new system. The data provide an initial calibration of reference materials to be used in studies of this type and is the first report of carboxyl carbon isotope distributions in mammals. Results showed widespread 13C enrichments in both essential and non-essential amino acid carboxyl groups, likely linked to decarboxylation of amino acids during normal metabolism. Analyses of non-essential amino acid isotope profiles showed (1) consistent and general taxon-level metabolic differences between the herbivore, human and whale samples, (2) marked differences among individual humans, ruminants and whales (3) evidence for gluconeogenesis in the wildlife samples, and (4) extensive 13C enrichment likely associated with fasting in the humpback whale sample. Future mammalian research related to the metabolism of growth, reproduction, aging and disease may benefit from using this technique. Values obtained for internationally available samples USGS42 and USGS43 (Tibetan and Indian human hair) provide a first characterization of reference materials for δ13CCARBOXYL profiles.
机译:逐渐测量氨基酸的碳同位素组合物,以表征饮食和对饮食的代谢反应。我们报告了一种新的高分辨率系统,以测量氨基酸内羧原子的稳定碳同位素组成。自动化系统使用HPLC将氨基酸分离,然后加入茚三酮,用于脱羧酸脱羧酸和将进化的CO2转移到稳定同位素比质谱仪进行Δ13CCarboxyl测量。茚三酮反应在酸性pH(1.5)下进行,升高的温度(160℃),得到最常见的氨基酸的接近100%的产率。用这种新系统分析了来自食草动物(Kudu和Caribou),Omnivores(人类)和食肉动物(弓头和驼背和驼背曲线)的八个哺乳动物角蛋白样品。数据提供了在这种类型的研究中使用的参考材料的初始校准,并且是哺乳动物中羧基碳同位素分布的第一报告。结果表明,在正常代谢期间,可能与氨基酸的脱羧剂相连的可能与氨基酸的脱羧剂相连的富含13C富集。非必需氨基酸同位素谱的分析显示(1)在食草动物,人和鲸鱼样本(2)之间的一致和一般的分类级代谢差异,(2)在葡甘油生成中的个体人物,反刍动物和鲸鱼(3)证据中显着差异野生动物样本和(4)大量的13C富集可能与仓库鲸鱼样本中的禁食相关。未来哺乳动物研究与生长,繁殖,老化和疾病的新陈代谢有关,可能会受益于使用这种技术。用于国际可用样品USGS42和USGS43(藏和印度人发)获得的值提供了Δ13CCarboxyl型材的参考材料的第一次表征。

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  • 作者

    Brian Fry; James F. Carter;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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