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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Quantification of Flavin-containing Monooxygenases 1, 3, and 5 in Human Liver Microsomes by UPLC-MRM-Based Targeted Quantitative Proteomics and Its Application to the Study of Ontogeny
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Quantification of Flavin-containing Monooxygenases 1, 3, and 5 in Human Liver Microsomes by UPLC-MRM-Based Targeted Quantitative Proteomics and Its Application to the Study of Ontogeny

机译:基于UPLC-MRM的靶向定量蛋白质组学技术定量测定人肝微粒体中含有黄素的单加氧酶1、3和5,并将其应用于个体发育研究

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摘要

Flavin-containing monooxygenases (FMOs) have a significant role in the metabolism of small molecule pharmaceuticals. Among the five human FMOs, FMO1, FMO3, and FMO5 are the most relevant to hepatic drug metabolism. Although age-dependent hepatic protein expression, based on immunoquantification, has been reported previously for FMO1 and FMO3, there is very little information on hepatic FMO5 protein expression. To overcome the limitations of immunoquantification, an ultra-performance liquid chromatography (UPLC)multiple reaction monitoring (MRM)-based targeted quantitative proteomic method was developed and optimized for the quantification of FMO1, FMO3, and FMO5 in human liver microsomes (HLM). A post-in silico product ion screening process was incorporated to verify LC-MRM detection of potential signature peptides before their synthesis. The developedmethodwas validated by correlatingmarker substrate activity and protein expression in a panel of adult individual donor HLM(age 39-67 years). The mean (range) protein expression of FMO3 and FMO5 was 46 (26-65) pmol/mg HLM protein and 27 (11.549) pmol/mgHLMprotein, respectively. To demonstrate quantification of FMO1, a panel of fetal individual donor HLM (gestational age 14-20 weeks) was analyzed. Themean (range) FMO1 protein expressionwas 7.0 (4.9-9.7) pmol/mg HLM protein. Furthermore, the ontogenetic protein expression of FMO5was evaluated in fetal, pediatric, and adult HLM. The quantification of FMO proteins also was compared using two different calibration standards, recombinant proteins versus synthetic signature peptides, to assess the ratio between holoprotein versus total protein. In conclusion, a UPLC-MRM-based targeted quantitative proteomic method has been developed for the quantification of FMO enzymes in HLM.
机译:含黄素的单加氧酶(FMO)在小分子药物的代谢中具有重要作用。在五个人类FMO中,FMO1,FMO3和FMO5与肝药物代谢最相关。尽管以前已经报道了基于免疫定量的年龄依赖性肝蛋白表达,但有关FMO1和FMO3的信息很少,但有关肝FMO5蛋白表达的信息很少。为了克服免疫定量技术的局限性,开发了一种基于超高效液相色谱(UPLC)多反应监测(MRM)的靶向定量蛋白质组方法,并优化了对人肝微粒体(HLM)中FMO1,FMO3和FMO5的定量。并入了计算机后产物离子筛选过程,以验证潜在的特征肽在合成之前的LC-MRM检测。通过相关的标记底物活性和蛋白质表达在一组成年个体供体HLM(年龄39-67岁)中的相关性验证了所开发的方法。 FMO3和FMO5的平均(范围)蛋白表达分别为46(26-65)pmol / mg HLM蛋白和27(11.549)pmol / mgHLM蛋白。为了证明FMO1的定量,分析了一组胎儿个体供体HLM(胎龄14-20周)。 Themean(范围)FMO1蛋白表达为7.0(4.9-9.7)pmol / mg HLM蛋白。此外,在胎儿,小儿和成人HLM中评估了FMO5的个体发育蛋白表达。还使用两种不同的校准标准(重组蛋白与合成标记肽)比较了FMO蛋白的定量,以评估全蛋白与总蛋白之间的比率。总之,已开发出一种基于UPLC-MRM的靶向定量蛋白质组方法,用于定量HLM中的FMO酶。

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