
Fulltext:
111359.pdf
Embargo:
until further notice
Size:
796.2Kb
Format:
PDF
Description:
Publisher’s version
Publication year
2013Source
Toxicological Sciences, 131, 2, (2013), pp. 502-11ISSN
Publication type
Article / Letter to editor

Display more detailsDisplay less details
Organization
Pharmacology-Toxicology
IMM - Institute for Molecules and Materials
Journal title
Toxicological Sciences
Volume
vol. 131
Issue
iss. 2
Page start
p. 502
Page end
p. 11
Subject
NCMLS 5: Membrane transport and intracellular motility; NCMLS 5: Membrane transport and intracellular motility IGMD 9: Renal disorder; NCMLS 5: Membrane transport and intracellular motility N4i 3: Poverty-related infectious diseasesAbstract
Digitalis-like compounds (DLCs), or cardiac glycosides, are produced and sequestered by certain plants and animals as a protective mechanism against herbivores or predators. Currently, the DLCs digoxin and digitoxin are used in the treatment of cardiac congestion and some types of cardiac arrhythmia, despite a very narrow therapeutic index. P-glycoprotein (P-gp; ABCB1) is the only known ATP-dependent efflux transporter that handles digoxin as a substrate. Ten alanine mutants of human P-gp drug-binding amino acids-Leu(65), Ile(306), Phe(336), Ile(340), Phe(343), Phe(728), Phe(942), Thr(945), Leu(975), and Val(982)-were generated and expressed in HEK293 cells with a mammalian baculovirus system. The uptake of [(3)H]-N-methyl-quinidine (NMQ), the P-gp substrate in vesicular transport assays, was determined. The mutations I306A, F343A, F728A, T945A, and L975A abolished NMQ transport activity of P-gp. For the other mutants, the apparent affinities for six DLCs (cymarin, digitoxin, digoxin, peruvoside, proscillaridin A, and strophanthidol) were determined. The affinities of digoxin, proscillaridin A, peruvoside, and cymarin for mutants F336A and I340A were decreased two- to fourfold compared with wild type, whereas that of digitoxin and strophanthidol did not change. In addition, the presence of a hydroxyl group at position 12beta seems to reduce the apparent affinity when the side chain of Phe(336) and Phe(942) is absent. Our results showed that a delta-lactone ring and a sugar moiety at 3beta of the steroid body are favorable for DLC binding to P-gp. Moreover, DLC inhibition is increased by hydroxyl groups at positions 5beta and 19, whereas inhibition is decreased by those at positions 1beta, 11alpha, 12beta, and 16beta. The understanding of the P-gp-DLC interaction improves our insight into DLCs toxicity and might enhance the replacement of digoxin with other DLCs that have less adverse drug effects.
This item appears in the following Collection(s)
- Academic publications [229074]
- Electronic publications [111477]
- Faculty of Medical Sciences [87745]
- Faculty of Science [34257]
Upload full text
Use your RU credentials (u/z-number and password) to log in with SURFconext to upload a file for processing by the repository team.