N-Linked Glycosylation of the Human ABC Transporter ABCG2 on Asparagine 596 Is Not Essential for Expression, Transport Activity, or Trafficking to the Plasma Membrane
- 15 March 2005
- journal article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 44 (14) , 5420-5429
- https://doi.org/10.1021/bi0479858
Abstract
The human ATP-binding cassette half-transporter ABCG2 is a 72 kDa plasma membrane protein that can confer multidrug resistance to cells in culture when overexpressed. Both transiently and stably expressed ABCG2 are glycosylated, and treatment with peptide N-glycosidase F reduces the apparent molecular mass on SDS−PAGE gels to approximately 60 kDa. Sequence analysis revealed three potential N-linked glycosylation sites in human ABCG2 at amino acids 418, 557, and 596. Site-directed mutagenesis experiments, in which each Asn was changed to Gln independently, revealed that only asparagine 596 is N-linked glycosylated. These data provide the first direct identification of the modified residue in ABCG2 and evidence for the localization of loop 5 to the extracellular space, previously only predicted from hydropathy analysis. Immunoblot and pulse-chase analyses revealed that the glycosylation-deficient ABCG2 (N596Q) variant and the glycosylated parent transporter are expressed equivalently at steady state and have similar half-lives. Cell surface analysis of ABCG2 expression showed comparable amounts of the N596Q variant present at the plasma membrane compared to the glycosylated ABCG2 protein. The ABCG2 (N596Q) variant is also functional, demonstrating rhodamine 123 transport in intact cells comparable to that in cells expressing glycosylated ABCG2. Furthermore, in crude membrane preparations, neither the basal nor the prazosin-stimulated (∼2-fold) ATPase activities of ABCG2 (N596Q) were affected compared to glycosylated ABCG2. Although subtle defects in transporter trafficking and function may exist, these data taken together suggest that N-glycosylation at arginine 596 is not essential for the expression, trafficking to the plasma membrane, or the overall function of ABCG2.Keywords
This publication has 16 references indexed in Scilit:
- Sterol Transport by the Human Breast Cancer Resistance Protein (ABCG2) Expressed in Lactococcus lactisPublished by Elsevier ,2003
- Rescuing protein conformation: prospects for pharmacological therapy in cystic fibrosisJournal of Clinical Investigation, 2002
- Characterization of Drug Transport, ATP Hydrolysis, and Nucleotide Trapping by the Human ABCG2 Multidrug TransporterPublished by Elsevier ,2002
- Use of peptide antibodies to probe for the mitoxantrone resistance-associated protein MXR/BCRP/ABCP/ABCG2Biochimica et Biophysica Acta (BBA) - Biomembranes, 2002
- Estrone and 17β‐Estradiol Reverse Breast Cancer Resistance Protein‐mediated Multidrug ResistanceJapanese Journal of Cancer Research, 2002
- Dominant‐negative inhibition of breast cancer resistance protein as drug efflux pump through the inhibition of S‐S dependent homodimerizationInternational Journal of Cancer, 2001
- Membrane Topology and Glycosylation of the Human Multidrug Resistance-associated ProteinJournal of Biological Chemistry, 1996
- Binding properties of monoclonal antibodies recognizing external epitopes of the human MDR1 P‐glycoproteinInternational Journal of Cancer, 1993
- BIOCHEMISTRY OF MULTIDRUG RESISTANCE MEDIATED BY THE MULTIDRUG TRANSPORTERAnnual Review of Biochemistry, 1993
- ABC Transporters: From Microorganisms to ManAnnual Review of Cell Biology, 1992