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Metabolomics reveals a novel vitamin E metabolite and attenuated vitamin E metabolism upon PXR activation

机译:代谢组学揭示了一种新的维生素E代谢物并在PXR激活后减弱了维生素E的代谢

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摘要

Pregnane X receptor (PXR) is an important nuclear receptor xenosensor that regulates the expression of metabolic enzymes and transporters involved in the metabolism of xenobiotics and endobiotics. In this study, ultra-performance liquid chromatography (UPLC) coupled with electrospray time-of-flight mass spectrometry (TOFMS), revealed altered urinary metabolomes in both Pxr-null and wild-type mice treated with the mouse PXR activator pregnenolone 16alpha-carbonitrile (PCN). Multivariate data analysis revealed that PCN significantly attenuated the urinary vitamin E metabolite alpha-carboxyethyl hydroxychroman (CEHC) glucuronide together with a novel metabolite in wild-type but not Pxr-null mice. Deconjugation experiments with beta-glucuronidase and beta-glucosidase suggested that the novel urinary metabolite was gamma-CEHC beta-D-glucoside (Glc). The identity of gamma-CEHC Glc was confirmed by chemical synthesis and by comparing tandem mass fragmentation of the urinary metabolite with the authentic standard. The lower urinary CEHC was likely due to PXR-mediated repression of hepatic sterol carrier protein 2 involved in peroxisomal beta-oxidation of branched-chain fatty acids (BCFA). Using a combination of metabolomic analysis and a genetically modified mouse model, this study revealed that activation of PXR results in attenuated levels of the two vitamin E conjugates, and identification of a novel vitamin E metabolite, gamma-CEHC Glc. Activation of PXR results in attenuated levels of the two vitamin E conjugates that may be useful as biomarkers of PXR activation.
机译:孕烷X受体(PXR)是重要的核受体异种传感器,可调节参与异源生物和内源生物代谢的代谢酶和转运蛋白的表达。在这项研究中,超高效液相色谱(UPLC)与电喷雾飞行时间质谱(TOFMS)结合,揭示了用小鼠PXR激活剂孕烯醇酮16alpha-碳腈处理的Pxr-null和野生型小鼠尿中代谢组的改变(PCN)。多变量数据分析表明,PCN在野生型小鼠体内可显着减弱尿中维生素E代谢物α-羧乙基羟苯并二氢呋喃(CEHC)葡糖醛酸以及一种新型代谢物,但对Pxr-null小鼠无效。用β-葡萄糖醛酸苷酶和β-葡萄糖苷酶进行的解偶联实验表明,新型尿液代谢物是γ-CEHCβ-D-葡萄糖苷(Glc)。 γ-CEHCGlc的身份已通过化学合成以及尿液代谢产物的串联质量裂解与真实标准品的比较得到证实。较低的尿中CEHC可能是由于PXR介导的肝固醇载体蛋白2的抑制与过氧化物酶体β-氧化的支链脂肪酸(BCFA)有关。结合代谢组学分析和基因修饰的小鼠模型,这项研究表明,PXR的激活导致两种维生素E结合物的水平降低,并鉴定出一种新型维生素E代谢物,γ-CEHCGlc。 PXR的激活导致两种维生素E偶联物的水平降低,可用作PXR激活的生物标记。

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