TY - JOUR
T1 - LC-MS/MS Based Quantitation of ABC and SLC Transporter Proteins in Plasma Membranes of Cultured Primary Human Retinal Pigment Epithelium Cells and Immortalized ARPE19 Cell Line
AU - Pelkonen, Laura
AU - Sato, Kazuki
AU - Reinisalo, Mika
AU - Kidron, Heidi
AU - Tachikawa, Masanori
AU - Watanabe, Michitoshi
AU - Uchida, Yasuo
AU - Urtti, Arto
AU - Terasaki, Tetsuya
N1 - Funding Information:
This work was supported by Academy of Finland (283721 and 28868), Sigrid Juselius Foundation, and the Doctoral Programme in Drug Research (University of Eastern Finland). The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript. We acknowledge Lea Pirskanen for technical assistance with the cell culture and fractionation and Anna Poutiainen for the immunofluorescence staining of ARPE19 cells.
Publisher Copyright:
© 2017 American Chemical Society.
PY - 2017/3/6
Y1 - 2017/3/6
N2 - The retinal pigment epithelium (RPE) forms the outer blood-retinal barrier between neural retina and choroid. The RPE has several important vision supporting functions, such as transport mechanisms that may also modify pharmacokinetics in the posterior eye segment. Expression of plasma membrane transporters in the RPE cells has not been quantitated. The aim of this study was to characterize and compare transporter protein expression in the ARPE19 cell line and hfRPE (human fetal RPE) cells by using quantitative targeted absolute proteomics (QTAP). Among 41 studied transporters, 16 proteins were expressed in hfRPE and 13 in ARPE19 cells. MRP1, MRP5, GLUT1, 4F2hc, TAUT, CAT1, LAT1, and MATE1 proteins were detected in both cell lines within 4-fold differences. MPR7, OAT2 and RFC1 were detected in the hfRPE cells, but their expression levels were below the limit of quantification in ARPE19 cells. PCFT was detected in both studied cell lines, but the expression was over 4-fold higher in hfRPE cells. MCT1, MCT4, MRP4, and Na+/K+ ATPase were upregulated in the ARPE19 cell line showing over 4-fold differences in the quantitative expression values. Expression levels of 25 transporters were below the limit of quantification in both cell models. In conclusion, we present the first systematic and quantitative study on transporter protein expression in the plasma membranes of ARPE19 and hfRPE cells. Overall, transporter expression in the ARPE19 and hfRPE cells correlated well and the absolute expression levels were similar, but not identical. The presented quantitative expression levels could be a useful basis for further studies on drug permeation in the outer blood-retinal barrier.
AB - The retinal pigment epithelium (RPE) forms the outer blood-retinal barrier between neural retina and choroid. The RPE has several important vision supporting functions, such as transport mechanisms that may also modify pharmacokinetics in the posterior eye segment. Expression of plasma membrane transporters in the RPE cells has not been quantitated. The aim of this study was to characterize and compare transporter protein expression in the ARPE19 cell line and hfRPE (human fetal RPE) cells by using quantitative targeted absolute proteomics (QTAP). Among 41 studied transporters, 16 proteins were expressed in hfRPE and 13 in ARPE19 cells. MRP1, MRP5, GLUT1, 4F2hc, TAUT, CAT1, LAT1, and MATE1 proteins were detected in both cell lines within 4-fold differences. MPR7, OAT2 and RFC1 were detected in the hfRPE cells, but their expression levels were below the limit of quantification in ARPE19 cells. PCFT was detected in both studied cell lines, but the expression was over 4-fold higher in hfRPE cells. MCT1, MCT4, MRP4, and Na+/K+ ATPase were upregulated in the ARPE19 cell line showing over 4-fold differences in the quantitative expression values. Expression levels of 25 transporters were below the limit of quantification in both cell models. In conclusion, we present the first systematic and quantitative study on transporter protein expression in the plasma membranes of ARPE19 and hfRPE cells. Overall, transporter expression in the ARPE19 and hfRPE cells correlated well and the absolute expression levels were similar, but not identical. The presented quantitative expression levels could be a useful basis for further studies on drug permeation in the outer blood-retinal barrier.
KW - blood−retinal barrier
KW - ocular pharmacokinetics
KW - quantitative targeted absolute proteomics
KW - retinal pigment epithelium
KW - transporter
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U2 - 10.1021/acs.molpharmaceut.6b00782
DO - 10.1021/acs.molpharmaceut.6b00782
M3 - Article
C2 - 28112518
AN - SCOPUS:85017659124
SN - 1543-8384
VL - 14
SP - 605
EP - 613
JO - Molecular Pharmaceutics
JF - Molecular Pharmaceutics
IS - 3
ER -