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应用液相色谱-串联质谱法结合QconCAT技术同时定量人肠道转运蛋白的绝对丰度。

Application of an LC-MS/MS method for the simultaneous quantification of human intestinal transporter proteins absolute abundance using a QconCAT technique.

作者信息

Harwood M D, Achour B, Russell M R, Carlson G L, Warhurst G, Rostami-Hodjegan A

机构信息

Gut Barrier Group, Inflammation & Repair, University of Manchester, Salford Royal NHS Trust, Salford M6 8HD, UK; Simcyp Limited (a Certara Company), Blades Enterprise Centre, Sheffield S2 4SU, UK.

Centre for Applied Pharmacokinetic Research, Manchester Pharmacy School, University of Manchester, Stopford Building, Oxford Road, Manchester M13 9PT, UK.

出版信息

J Pharm Biomed Anal. 2015 Jun 10;110:27-33. doi: 10.1016/j.jpba.2015.02.043. Epub 2015 Feb 28.

Abstract

Transporter proteins expressed in the gastrointestinal tract play a major role in the oral absorption of some drugs, and their involvement may lead to drug-drug interaction (DDI) susceptibility when given in combination with drugs known to inhibit gut wall transporters. Anticipating such liabilities and predicting the magnitude of the impact of transporter proteins on oral drug absorption and DDIs requires quantification of their expression in human intestine, and linking these to data obtained through in vitro experiments. A quantitative targeted absolute proteomic method employing liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS) together with a quantitative concatenation (QconCAT) strategy to provide proteotypic peptide standards has been applied to quantify ATP1A1 (sodium/potassium-ATPase; Na/K-ATPase), CDH17 (human peptide transporter 1; HPT1), ABCB1 (P-glycoprotein; P-gp), ABCG2 (breast cancer resistance protein; BCRP), ABCC2 (multidrug resistance-associated protein 2; MRP2) and SLC51A (Organic Solute Transporter subunit alpha; OST-α), in human distal jejunum (n=3) and distal ileum (n=1) enterocyte membranes. Previously developed selected reaction monitoring (SRM) schedules were optimised to enable quantification of the proteotypic peptides for each transporter. After harvesting enterocytes by calcium chelation elution and generating a total membrane fraction, the proteins were subjected to proteolytic digestion. To account for losses of peptides during the digestion procedure, a gravimetric method is also presented. The linearity of quantifying the QconCAT from an internal standard (correlation coefficient, R(2)=0.998) and quantification of all target peptides in a pooled intestinal quality control sample (R(2)≥ 0.980) was established. The assay was also assessed for within and between-day precision, demonstrating a <15% coefficient of variation for all peptides across 3 separate analytical runs, over 2 days. The methods were applied to obtain the absolute abundances for all targeted proteins. In all samples, Na/K-ATPase, HPT1, P-gp and BCRP were detected above the lower limit of quantitation (i.e., >0.2 fmol/μg membrane protein). MRP2 abundance could be quantified in distal jejunum but not in the distal ileum sample. OST-α was not detected in 2 out of 3 jejunum samples. This study highlights the utility of a QconCAT strategy to quantify absolute transporter abundances in human intestinal tissues.

摘要

在胃肠道中表达的转运蛋白在某些药物的口服吸收中起主要作用,当与已知抑制肠壁转运蛋白的药物联合使用时,它们的参与可能导致药物相互作用(DDI)易感性。预测此类风险并预测转运蛋白对口服药物吸收和药物相互作用的影响程度,需要对其在人肠道中的表达进行定量,并将这些与通过体外实验获得的数据联系起来。一种采用液相色谱-串联质谱联用(LC-MS/MS)以及定量串联(QconCAT)策略以提供蛋白型肽标准品的定量靶向绝对蛋白质组学方法,已被应用于定量人空肠远端(n = 3)和回肠远端(n = 1)肠细胞膜中的ATP1A1(钠/钾-ATP酶;Na/K-ATP酶)、CDH17(人肽转运蛋白1;HPT1)、ABCB1(P-糖蛋白;P-gp)、ABCG2(乳腺癌耐药蛋白;BCRP)、ABCC2(多药耐药相关蛋白2;MRP2)和SLC51A(有机溶质转运体亚基α;OST-α)。对先前开发的选择反应监测(SRM)程序进行了优化,以实现对每种转运蛋白的蛋白型肽的定量。通过钙螯合洗脱收获肠细胞并生成总膜组分后,对蛋白质进行蛋白水解消化。为了考虑消化过程中肽的损失,还提出了一种重量法。建立了从内标定量QconCAT的线性关系(相关系数,R(2)=0.998)以及在合并的肠道质量控制样品中对所有目标肽的定量(R(2)≥0.980)。还评估了该测定法的日内和日间精密度,结果表明在2天内的3次独立分析运行中,所有肽的变异系数均<15%。这些方法被应用于获得所有靶向蛋白的绝对丰度。在所有样品中,Na/K-ATP酶、HPT1、P-gp和BCRP的检测量高于定量下限(即>0.2 fmol/μg膜蛋白)。MRP2的丰度可以在空肠远端定量,但在回肠远端样品中无法定量。在3个空肠样品中有2个未检测到OST-α。本研究强调了QconCAT策略在定量人肠道组织中转运蛋白绝对丰度方面的实用性。

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