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首页> 外文期刊>American Journal of Physiology >Targeted metabolomics and mathematical modeling demonstrate that vitamin B-6 restriction alters one-carbon metabolism in cultured HepG2 cells
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Targeted metabolomics and mathematical modeling demonstrate that vitamin B-6 restriction alters one-carbon metabolism in cultured HepG2 cells

机译:靶向的代谢组和数学建模表明,维生素B-6限制改变了培养的HepG2细胞中的一种碳代谢

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摘要

Low vitamin B-6 nutritional status is associated with increased risk for cardiovascular disease and certain cancers. Pyridoxal 5′-phosphate (PLP) serves as a coenzyme in many cellular processes, including several reactions in one-carbon (1C) metabolism and the transsulfuration pathway of homocysteine catabolism. To assess the effect of vitamin B-6 deficiency on these processes and associated pathways, we conducted quantitative analysis of 1C metabolites including tetrahydrofolate species in HepG2 cells cultured in various concentrations of pyridoxal. These results were compared with predictions of a mathematical model of 1C metabolism simulating effects of vitamin B-6 deficiency. In cells cultured in vitamin B-6-deficient medium (25 or 35 nmol/l pyridoxal), we observed >200% higher concentrations of betaine (P < 0.05) and creatinine (P < 0.05) and >60% lower concentrations of creatine (P < 0.05) and 5,10-methenyltetrahydrofolate (P < 0.05) compared with cells cultured in medium containing intermediate (65 nmol/l) or the supraphysiological 2,015 nmol/l pyridoxal. Cystathionine, cysteine, glutathione, and cysteinylglycine, which are components of the transsulfuration pathway and subsequent reactions, exhibited greater concentrations at the two lower vitamin B-6 concentrations. Partial least squares discriminant analysis showed differences in overall profiles between cells cultured in 25 and 35 nmol/l pyridoxal vs. those in 65 and 2,015 nmol/l pyridoxal. Mathematical model predictions aligned with analytically derived results. These data reveal pronounced effects of vitamin B-6 deficiency on 1C-related metabolites, including previously unexpected secondary effects on creatine. These results complement metabolomic studies in humans demonstrating extended metabolic effects of vitamin B-6 insufficiency.
机译:低维生素B-6营养状况与心血管疾病和某些癌症的风险增加有关。吡哆醛5'-磷酸酯(PLP)用作许多细胞过程中的辅酶,包括在单碳(1C)代谢和同糖苷分解代谢的过留率途径中的几种反应。为了评估维生素B-6缺乏对这些方法和相关途径的影响,我们对1C代谢物进行了定量分析,包括以各种浓度的吡哆醛培养的HepG2细胞中的四氢溶胶物种。将这些结果与1C代谢模拟效果的数学模型进行了比较了维生素B-6缺乏的预测。在维生素B-6缺陷培养基中培养的细胞(25或35个或35个Nmol / L吡哆醛)中,我们观察到> 200%较高浓度的甜菜碱(P <0.05)和肌酐(P <0.05)和> 60%较低浓度的肌酸(P <0.05)和5,10-甲烯基四氢溶胶(P <0.05)与含中间体(65 Nmol / L)或超级性2,015 Nmol / L吡哆醛培养的细胞相比。胱硫胺,半胱氨酸,谷胱甘肽和半胱氨酸,其是过留液途径和随后的反应的组分,在两个降低的维生素B-6浓度下表现出更大的浓度。局部最小二乘判别分析显示出在25和35 Nmol / L吡哆醛与吡哆醛中培养的细胞之间的整体谱的差异。数学模型预测与分析衍生结果对齐。这些数据揭示了维生素B-6缺乏对1C相关代谢物的显着影响,包括肌酸中以前意外的二次影响。这些结果补充了人类的代谢组研究,证明了维生素B-6不足的延长代谢效应。

著录项

  • 来源
    《American Journal of Physiology》 |2014年第1期|共9页
  • 作者单位

    Food Science and Human Nutrition Department Institute of Food and Agricultural Sciences;

    Food Science and Human Nutrition Department Institute of Food and Agricultural Sciences;

    Biomedical Mass Spectrometry Laboratory Clinical and Translational Science Institute University;

    Food Science and Human Nutrition Department Institute of Food and Agricultural Sciences;

    Biomedical Mass Spectrometry Laboratory Clinical and Translational Science Institute University;

    Department of Biostatistics University of Florida Gainesville FL United States;

    Department of Biology Duke University Durham NC United States;

    Department of Mathematics Duke University Durham NC United States;

    Food Science and Human Nutrition Department Institute of Food and Agricultural Sciences;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    Folate; Metabolite profile; One-carbon; Vitamin B-6;

    机译:叶酸;代谢物剖面;单碳;维生素B-6;

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