Primary Active Transport of Peptidic Endothelin Antagonists by Rat Hepatic Canalicular Membrane

Abstract

The biliary excretion mechanism of three derivatives of BQ-123, an anionic cyclopentapeptide, was examined using isolated canalicular membrane vesicles (CMVs) from Sprague-Dawley rats. The uptake by CMV of BQ-485, a linear peptide, BQ-518, a cyclic peptide, and compound A, a cyclic peptide with a cationic moiety, was stimulated by ATP. An “overshoot” phenomenon and saturation were observed for the ATP-dependent uptake of these three peptides. The Michaelis-Menten constants (Km) for the uptake of BQ-485 and BQ-518 were comparable to the inhibition constants (Ki) for their inhibitory effects on ATP-dependent [3H]BQ-123 uptake. The uptake of BQ-485 showed the highest value and was inhibited by BQ-123 with aKi that was comparable to theKm for BQ-123 uptake. The ATP-dependent uptake of BQ-123, BQ-485, and BQ-518 was much lower in CMVs from Eisai hyperbilirubinemic rats, a strain having a hereditary defect of the canalicular multispecific organic anion transporter (cMOAT). These results suggest that both BQ-485 and BQ-518 principally share the cMOAT transporter with BQ-123. Compound A almost completely inhibited BQ-123 uptake, although its ATP-dependent uptake was much lower than that of the other three peptides. The ATP-dependent uptake of compound A was not very different in Sprague-Dawley rats and Eisai hyperbilirubinemic rats and was not inhibited byS-(2,4-dinitrophenyl)-glutathione, a typical substrate for cMOAT. Thus, although compound A inhibits cMOAT-mediated transport, its own transport by cMOAT is minimal and mediated by another transporter. This low degree of primary active transport by cMOAT may be the principal reason for its relatively longer residence in the circulation.

Footnotes

  • Send reprint requests to: Dr. Yuichi Sugiyama, Graduate School of Pharmaceutical Sciences, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan. E-mail:sugiyama{at}seizai.f.u-tokyo.ac.jp

  • 1 This study was supported in part by a grant-in-aid for Scientific Research provided by the Ministry of Education, Science and Culture of Japan and in part by Core Research for Evolutional Science and Technology of Japan Science and Technology Corporation (J.S.T.).

  • Abbreviations:
    ET
    endothelin
    CMV
    canalicular membrane vesicle
    SD
    Sprague-Dawley
    EHBR
    Eisai hyperbilirubinemic rat
    cMOAT
    canalicular multispecific organic anion transporter
    DNP-SG
    S-(2,4-dinitrophenyl)-glutathione
    TCA
    taurocholic acid
    CLdif
    nonspecific uptake clearance
    CLbile, h
    biliary excretion clearance
    • Received May 26, 1998.
    • Accepted September 4, 1998.
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