Transmembrane segment 7 of human P-glycoprotein forms part of the drug-binding pocket
- 27 September 2006
- journal article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 399 (2) , 351-359
- https://doi.org/10.1042/bj20060715
Abstract
P-gp (P-glycoprotein; ABCB1) protects us by transporting a broad range of structurally unrelated compounds out of the cell. Identifying the regions of P-gp that make up the drug-binding pocket is important for understanding the mechanism of transport. The common drug-binding pocket is at the interface between the transmembrane domains of the two homologous halves of P-gp. It has been shown in a previous study [Loo, Bartlett and Clarke (2006) Biochem. J. 396, 537-545] that the first transmembrane segment (TM1) contributed to the drug-binding pocket. In the present study, we used cysteine-scanning mutagenesis, reaction with an MTS (methanethiosulfonate) thiol-reactive analogue of verapamil (termed MTS-verapamil) and cross-linking analysis to test whether the equivalent transmembrane segment (TM7) in the C-terminal-half of P-gp also contributed to drug binding. Mutation of Phe728 to cysteine caused a 4-fold decrease in apparent affinity for the drug substrate verapamil. Mutant F728C also showed elevated ATPase activity (11.5-fold higher than untreated controls) after covalent modification with MTS-verapamil. The activity returned to basal levels after treatment with dithiothreitol. The substrates, verapamil and cyclosporin A, protected the mutant from labelling with MTS-verapamil. Mutant F728C could be cross-linked with a homobifunctional thiol-reactive cross-linker to cysteines I306C(TM5) and F343C(TM6) that are predicted to line the drug-binding pocket. Disulfide cross-linking was inhibited by some drug substrates such as Rhodamine B, calcein acetoxymethyl ester, cyclosporin, verapamil and vinblastine or by vanadate trapping of nucleotides. These results indicate that TM7 forms part of the drug-binding pocket of P-gp.Keywords
This publication has 50 references indexed in Scilit:
- Transmembrane segment 1 of human P-glycoprotein contributes to the drug-binding pocketBiochemical Journal, 2006
- Do drug substrates enter the common drug-binding pocket of P-glycoprotein through “gates”?Biochemical and Biophysical Research Communications, 2005
- Disulfide Cross-linking Analysis Shows That Transmembrane Segments 5 and 8 of Human P-glycoprotein Are Close Together on the Cytoplasmic Side of the MembraneJournal of Biological Chemistry, 2004
- RETRACTED: Structure of MsbA from Vibrio cholera: A Multidrug Resistance ABC Transporter Homolog in a Closed ConformationJournal of Molecular Biology, 2003
- Stoichiometry and Affinity of Nucleotide Binding to P-Glycoprotein during the Catalytic CycleBiochemistry, 2002
- ATPase Activity of the MsbA Lipid Flippase of Escherichia coliPublished by Elsevier ,2002
- Determining the Dimensions of the Drug-binding Domain of Human P-glycoprotein Using Thiol Cross-linking Compounds as Molecular RulersJournal of Biological Chemistry, 2001
- ABC-ATPases, adaptable energy generators fuelling transmembrane movement of a variety of molecules in organisms from bacteria to humansJournal of Molecular Biology, 1999
- BIOCHEMICAL, CELLULAR, AND PHARMACOLOGICAL ASPECTS OF THE MULTIDRUG TRANSPORTERAnnual Review of Pharmacology and Toxicology, 1999
- ATP hydrolysis cycles and mechanism inP-glycoprotein and CFTRSeminars in Cancer Biology, 1997