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采用代谢组学和稳定同位素示踪策略,通过 Slc27a5 基因表达衰减和胆汁酸再结合的 LC-MS 测量。

Attenuation of Slc27a5 gene expression followed by LC-MS measurement of bile acid reconjugation using metabolomics and a stable isotope tracer strategy.

机构信息

Merck Research Laboratories, Rahway, New Jersey, United States.

出版信息

J Proteome Res. 2011 Oct 7;10(10):4683-91. doi: 10.1021/pr200475g. Epub 2011 Aug 26.

Abstract

The purpose of this study was to evaluate the use of high resolution LC-MS together with metabolomics and D(4)-cholic acid (D(4)-CA) as a metabolic tracer to measure the metabolism and reconjugation of bile acids (BAs) in vitro and in vivo. Metabolic tracers are very important because they allow for the direct detection (substrate-to-product) of small and significant biological perturbations that may not be apparent when monitoring "static" endogenous levels of particular metabolites. Slc27a5, also known as fatty acid transport protein 5 (FATP5), is the hepatic BA-CoA ligase involved in reconjugating BAs during enterohepatic BA recycling. Using Slc27a5-cKD mice, silencing of ∼90% gene expression was achieved followed by reduction in the reconjugation of D(4)-CA to D(4)-taurocholic acid (D(4)-TCA), as well as other conjugated BA metabolites in plasma (p = 0.0031). The method described allowed a rapid measure of many D(4) and endogenous BA. Analysis of bile resulted in the detection of 39 BA metabolites from a 13 min analytical run. Finally, the utilization of a novel high resolution mass spectrometry method in combination with metabolomics and a stable isotope metabolic tracer allowed for the detection of targeted and untargeted BAs following silencing of the Slc27a5 gene in primary hepatocytes and in mice.

摘要

本研究旨在评估使用高分辨 LC-MS 结合代谢组学和 D(4)-胆酸 (D(4)-CA) 作为代谢示踪剂,来测量体外和体内胆汁酸 (BAs) 的代谢和再结合。代谢示踪剂非常重要,因为它们可以直接检测(底物到产物)微小而显著的生物学扰动,而在监测特定代谢物的“静态”内源性水平时,这些扰动可能并不明显。Slc27a5 也称为脂肪酸转运蛋白 5 (FATP5),是参与肠肝胆汁酸再循环中胆汁酸再结合的肝 BA-CoA 连接酶。使用 Slc27a5-cKD 小鼠,成功实现了约 90%基因表达的沉默,随后 D(4)-CA 向 D(4)-牛磺胆酸 (D(4)-TCA) 以及血浆中其他结合胆汁酸代谢物的再结合减少(p=0.0031)。所描述的方法允许快速测量许多 D(4) 和内源性 BA。胆汁分析导致从 13 分钟的分析运行中检测到 39 种 BA 代谢物。最后,在原发性肝细胞和小鼠中沉默 Slc27a5 基因后,利用新型高分辨质谱法结合代谢组学和稳定同位素代谢示踪剂,可检测靶向和非靶向 BA。

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