Alteration of Substrate Specificity by Mutations at the His61 Position in Predicted Transmembrane Domain 1 of Human MDR1/P-Glycoprotein
- 1 July 1997
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 36 (29) , 8883-8889
- https://doi.org/10.1021/bi970553v
Abstract
In CFTR, a member of the ABC superfamily and a chloride channel, amino acid substitutions in its transmembrane domains 1 and 6 (TM1, TM6) have been reported to modulate the anion selectivity or ion conductance of the ion channel. In P-glycoprotein, no amino acid substitution in TM1, but some in TM6, have been reported to modify the substrate specificity of this protein. In this work, we demonstrated the involvement of His61, which is in the middle of the predicted TM1, in the function of P-glycoprotein. His61 was replaced by all other amino acid residues, and each of the mutant cDNAs was introduced into drug-sensitive human carcinoma cells, KB3-1. The drug-resistance profile of cells stably expressing each mutated P-glycoprotein was investigated by comparing their relative resistance to vinblastine, colchicine, VP16, and adriamycin. The resistance to vinblastine was increased by replacing His61 by amino acids with smaller side chains, while it was lowered by replacing by amino acids with bulkier side chains. The reverse effect was observed for resistance to colchicine and VP16. The resistance to adriamycin was increased by replacing by amino acids with bulkier side chains except Lys or Arg, which have a basic side chain. We also showed that the replacement of His61 by Phe and Lys greatly impaired the efflux of calcein AM, while the replacement had no effect on the efflux of rhodamine 123. These results suggest that an amino acid residue at position 61 in TM1 is important in deciding the substrate specificity of P-glycoprotein.Keywords
This publication has 10 references indexed in Scilit:
- Aureobasidin A, an antifungal cyclic depsipeptide antibiotic, is a substrate for both human MDR1 and MDR2/P‐glycoproteinsFEBS Letters, 1996
- Are altered pHi and membrane potential in hu MDR 1 transfectants sufficient to cause MDR protein-mediated multidrug resistance?The Journal of general physiology, 1996
- Multi-ion pore behaviour in the CFTR chloride channelNature, 1993
- The Cystic Fibrosis Transmembrane Conductance RegulatorAnnual Review of Physiology, 1993
- Functional expression of human P‐glycoprotein in Schizosaccharomyces pombeFEBS Letters, 1993
- P‐glycoprotein‐mediated transcellular transport of MDR‐reversing agentsFEBS Letters, 1993
- BIOCHEMISTRY OF MULTIDRUG RESISTANCE MEDIATED BY THE MULTIDRUG TRANSPORTERAnnual Review of Biochemistry, 1993
- Molecular and Cellular Biology of Multidrug Resistance in Tumor CellsPublished by Springer Nature ,1991
- P‐glycoprotein: multidrug‐resistance and a superfamily of membrane‐associated transport proteinsThe FASEB Journal, 1989
- THE BIOCHEMISTRY OF P-GLYCOPROTEIN-MEDIATED MULTIDRUG RESISTANCEAnnual Review of Biochemistry, 1989