首页> 外文期刊>Journal of Nutrition >Plasma Acylcarnitine Profiles Suggest Incomplete Long-Chain Fatty Acid {beta}-Oxidation and Altered Tricarboxylic Acid Cycle Activity in Type 2 Diabetic African-American Women
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Plasma Acylcarnitine Profiles Suggest Incomplete Long-Chain Fatty Acid {beta}-Oxidation and Altered Tricarboxylic Acid Cycle Activity in Type 2 Diabetic African-American Women

机译:血浆酰基肉碱轮廓表明2型糖尿病非裔美国女性的不完全长链脂肪酸{beta}-氧化作用和改变的三羧酸循环活性

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摘要

Inefficient muscle long-chain fatty acid (LCFA) combustion is associated with insulin resistance, but molecular links between mitochondrial fat catabolism and insulin action remain controversial. We hypothesized that plasma acylcarnitine profiling would identify distinct metabolite patterns reflective of muscle fat catabolism when comparing individuals bearing a missense G304A uncoupling protein 3 (UCP3 g/a) polymorphism to controls, because UCP3 is predominantly expressed in skeletal muscle and g/a individuals have reduced whole-body fat oxidation. MS analyses of 42 carnitine moieties in plasma samples from fasting type 2 diabetics (n = 44) and nondiabetics (n = 12) with or without the UCP3 g/a polymorphism (n = 28/genotype: 22 diabetic, 6 nondiabetic/genotype) were conducted. Contrary to our hypothesis, genotype had a negligible impact on plasma metabolite patterns. However, a comparison of nondiabetics vs. type 2 diabetics revealed a striking increase in the concentrations of fatty acylcarnitines reflective of incomplete LCFA β-oxidation in the latter (i.e. summed C10- to C14-carnitine concentrations were 300% of controls; P = 0.004). Across all volunteers (n = 56), acetylcarnitine rose and propionylcarnitine decreased with increasing hemoglobin A1c (r = 0.544, P < 0.0001; and r = –0.308, P sup> 0.05, respectively) and with increasing total plasma acylcarnitine concentration. In proof-of-concept studies, we made the novel observation that C12-C14 acylcarnitines significantly stimulated nuclear factor -B activity (up to 200% of controls) in RAW264.7 cells. These results are consistent with the working hypothesis that inefficient tissue LCFA β-oxidation, due in part to a relatively low tricarboxylic acid cycle capacity, increases tissue accumulation of acetyl-CoA and generates chain-shortened acylcarnitine molecules that activate proinflammatory pathways implicated in insulin resistance.
机译:低效率的肌肉长链脂肪酸(LCFA)燃烧与胰岛素抵抗相关,但 线粒体脂肪分解代谢与胰岛素作用之间的分子联系仍存在争议。 我们假设,当比较携带错义的G304A解耦 蛋白3(UCP3)的个体时,血浆酰基肉碱轮廓分析将识别出反映肌肉脂肪分解代谢的 独特的代谢产物模式 g / a)多态性存在于对照中,因为UCP3 主要在骨骼肌中表达,而g / a个人 降低了全身脂肪氧化。 MS分析空腹2型糖尿病患者(n = 44)和非糖尿病患者(n = 12)血浆样品中42种肉碱 部分,是否有UCP3 g / a 多态性(n = 28 /基因型:22糖尿病,6非糖尿病/基因型) 。与我们的假设相反,基因型对血浆代谢物模式的影响 。但是,非糖尿病患者与2型糖尿病患者的比较 发现,反映出 不完全LCFAβ氧化的脂肪酰基肉碱浓度显着增加 。后者(即, 到C14-肉碱的总浓度是对照组的300%; P = 0.004)。在所有志愿者(n = 56)中,随着血红蛋白 A1c的增加,乙酰肉碱 上升,丙酰肉碱下降(r = 0.544,P <0.0001; r ​​= –0.308,P sup> 0.05)并随着血浆总酰基肉碱 浓度的增加而增加。在概念验证研究中,我们进行了新颖的 观察,即C12-C14酰基肉碱可显着刺激RAW264中的 核因子-B活性(最多为对照组的200%)。 7 单元格。这些结果与工作假设 一致,该工作假设组织LCFAβ氧化效率低下,部分原因是 相对较低的三羧酸循环能力,导致 组织中乙酰辅酶A的积累,并产生短链的 酰基肉碱分子,这些分子激活促炎途径 ,与胰岛素抵抗有关。

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  • 来源
    《Journal of Nutrition》 |2009年第6期|1073-1081|共9页
  • 作者单位

    USDA/Agricultural Research Service Western Human Nutrition Research Center and|Department of Nutrition, University of California, Davis, CA 95616;

    Department of Pharmacology, Case Western Reserve University, Cleveland, OH, 44106 and;

    Department of Nutrition Sciences, University of Alabama, Birmingham, AL 35294;

    Department of Nutrition, University of California, Davis, CA 95616;

    USDA/Agricultural Research Service Western Human Nutrition Research Center and;

    Department of Pharmacology, Case Western Reserve University, Cleveland, OH, 44106 and;

    USDA/Agricultural Research Service Western Human Nutrition Research Center and|Department of Nutrition, University of California, Davis, CA 95616;

    USDA/Agricultural Research Service Western Human Nutrition Research Center and|Department of Nutrition, University of California, Davis, CA 95616;

    Department of Nutrition Sciences, University of Alabama, Birmingham, AL 35294;

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