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Research ArticleArticle

Abundance of Drug Transporters in the Human Kidney Cortex as Quantified by Quantitative Targeted Proteomics

Bhagwat Prasad, Katherine Johnson, Sarah Billington, Caroline Lee, Git W. Chung, Colin D.A. Brown, Edward J. Kelly, Jonathan Himmelfarb and Jashvant D. Unadkat
Drug Metabolism and Disposition December 2016, 44 (12) 1920-1924; DOI: https://doi.org/10.1124/dmd.116.072066
Bhagwat Prasad
Department of Pharmaceutics, University of Washington, Seattle, Washington (B.P., K.J., S.B., E.J.K., J.D.U.); Ardea Biosciences, San Diego, California (C.L.); Medical School, Newcastle University, Newcastle upon Tyne, United Kingdom (G.W.C., C.D.A.B); and Division of Nephrology, Kidney Research Institute, University of Washington, Seattle, Washington (J.H.).
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Katherine Johnson
Department of Pharmaceutics, University of Washington, Seattle, Washington (B.P., K.J., S.B., E.J.K., J.D.U.); Ardea Biosciences, San Diego, California (C.L.); Medical School, Newcastle University, Newcastle upon Tyne, United Kingdom (G.W.C., C.D.A.B); and Division of Nephrology, Kidney Research Institute, University of Washington, Seattle, Washington (J.H.).
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Sarah Billington
Department of Pharmaceutics, University of Washington, Seattle, Washington (B.P., K.J., S.B., E.J.K., J.D.U.); Ardea Biosciences, San Diego, California (C.L.); Medical School, Newcastle University, Newcastle upon Tyne, United Kingdom (G.W.C., C.D.A.B); and Division of Nephrology, Kidney Research Institute, University of Washington, Seattle, Washington (J.H.).
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Caroline Lee
Department of Pharmaceutics, University of Washington, Seattle, Washington (B.P., K.J., S.B., E.J.K., J.D.U.); Ardea Biosciences, San Diego, California (C.L.); Medical School, Newcastle University, Newcastle upon Tyne, United Kingdom (G.W.C., C.D.A.B); and Division of Nephrology, Kidney Research Institute, University of Washington, Seattle, Washington (J.H.).
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Git W. Chung
Department of Pharmaceutics, University of Washington, Seattle, Washington (B.P., K.J., S.B., E.J.K., J.D.U.); Ardea Biosciences, San Diego, California (C.L.); Medical School, Newcastle University, Newcastle upon Tyne, United Kingdom (G.W.C., C.D.A.B); and Division of Nephrology, Kidney Research Institute, University of Washington, Seattle, Washington (J.H.).
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Colin D.A. Brown
Department of Pharmaceutics, University of Washington, Seattle, Washington (B.P., K.J., S.B., E.J.K., J.D.U.); Ardea Biosciences, San Diego, California (C.L.); Medical School, Newcastle University, Newcastle upon Tyne, United Kingdom (G.W.C., C.D.A.B); and Division of Nephrology, Kidney Research Institute, University of Washington, Seattle, Washington (J.H.).
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Edward J. Kelly
Department of Pharmaceutics, University of Washington, Seattle, Washington (B.P., K.J., S.B., E.J.K., J.D.U.); Ardea Biosciences, San Diego, California (C.L.); Medical School, Newcastle University, Newcastle upon Tyne, United Kingdom (G.W.C., C.D.A.B); and Division of Nephrology, Kidney Research Institute, University of Washington, Seattle, Washington (J.H.).
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Jonathan Himmelfarb
Department of Pharmaceutics, University of Washington, Seattle, Washington (B.P., K.J., S.B., E.J.K., J.D.U.); Ardea Biosciences, San Diego, California (C.L.); Medical School, Newcastle University, Newcastle upon Tyne, United Kingdom (G.W.C., C.D.A.B); and Division of Nephrology, Kidney Research Institute, University of Washington, Seattle, Washington (J.H.).
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Jashvant D. Unadkat
Department of Pharmaceutics, University of Washington, Seattle, Washington (B.P., K.J., S.B., E.J.K., J.D.U.); Ardea Biosciences, San Diego, California (C.L.); Medical School, Newcastle University, Newcastle upon Tyne, United Kingdom (G.W.C., C.D.A.B); and Division of Nephrology, Kidney Research Institute, University of Washington, Seattle, Washington (J.H.).
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Abstract

Protein expression of renal uptake and efflux transporters was quantified by quantitative targeted proteomics using the surrogate peptide approach. Renal uptake transporters assessed in this study included organic anion transporters (OAT1–OAT4), organic cation transporter 2 (OCT2), organic/carnitine cation transporters (OCTN1 and OCTN2), and sodium-glucose transporter 2 (SGLT2); efflux transporters included P-glycoprotein, breast cancer resistance protein, multidrug resistance proteins (MRP2 and MRP4), and multidrug and toxin extrusion proteins (MATE1 and MATE2-K). Total membrane was isolated from the cortex of human kidneys (N = 41). The isolated membranes were digested by trypsin and the digest was subjected to liquid chromatography–tandem mass spectrometry analysis. The mean expression of surrogate peptides was as follows (given with the standard deviation, in picomoles per milligram of total membrane protein): OAT1 (5.3 ± 1.9), OAT2 (0.9 ± 0.3), OAT3 (3.5 ± 1.6), OAT4 (0.5 ± 0.2), OCT2 (7.4 ± 2.8), OCTN1 (1.3 ± 0.6), OCTN2 (0.6 ± 0.2), P-glycoprotein (2.1 ± 0.8), MRP2 (1.4 ± 0.6), MRP4 (0.9 ± 0.6), MATE1 (5.1 ± 2.3), and SGLT2 (3.7 ± 1.8). Breast cancer resistance protein (BCRP) and MATE2-K proteins were detectable but were below the lower limit of quantification. Interestingly, the protein expression of OAT1 and OAT3 was significantly correlated (r > 0.8). A significant correlation was also observed between expression of multiple other drug transporters, such as OATs/OCT2 or OCTN1/OCTN2, and SGLT2/OCTNs, OCT, OATs, and MRP2. These renal transporter data should be useful in deriving in vitro to in vivo scaling factors to accurately predict renal clearance and kidney epithelial cell exposure to drugs or their metabolites.

Footnotes

    • Received June 13, 2016.
    • Accepted September 9, 2016.
  • This research was supported by the National Institutes of Health National Center for Advancing Translational Sciences [Grant UH2TR000504] and the National Institutes of Health National Institute on Drug Abuse [Grant DA032507].

  • dx.doi.org/10.1124/dmd.116.072066.

  • ↵Embedded ImageThis article has supplemental material available at dmd.aspetjournals.org.

  • Copyright © 2016 by The American Society for Pharmacology and Experimental Therapeutics
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Drug Metabolism and Disposition: 44 (12)
Drug Metabolism and Disposition
Vol. 44, Issue 12
1 Dec 2016
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Research ArticleArticle

Interindividual Variability in Renal Drug Transporter Protein Expression

Bhagwat Prasad, Katherine Johnson, Sarah Billington, Caroline Lee, Git W. Chung, Colin D.A. Brown, Edward J. Kelly, Jonathan Himmelfarb and Jashvant D. Unadkat
Drug Metabolism and Disposition December 1, 2016, 44 (12) 1920-1924; DOI: https://doi.org/10.1124/dmd.116.072066

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Research ArticleArticle

Interindividual Variability in Renal Drug Transporter Protein Expression

Bhagwat Prasad, Katherine Johnson, Sarah Billington, Caroline Lee, Git W. Chung, Colin D.A. Brown, Edward J. Kelly, Jonathan Himmelfarb and Jashvant D. Unadkat
Drug Metabolism and Disposition December 1, 2016, 44 (12) 1920-1924; DOI: https://doi.org/10.1124/dmd.116.072066
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