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PMID: 17681482 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Quaternary structure and apical membrane sorting of the mammalian NaSi-1 sulfate transporter in renal cell lines.

The international journal of biochemistry & cell biology ·Vol. 39 ·No. 12 ·2007-00-00 ·Pages 2240-51

Regeer RR, Nicke A, Markovich D

Abstract

NaSi-1 encodes a Na(+)-sulfate cotransporter expressed on the apical membrane of renal proximal tubular cells, which is responsible for body sulfate homeostasis. Limited information is available on NaSi-1 protein structure and the mechanisms controlling its apical membrane sorting. The aims of this study were to biochemically determine the quaternary structure of the rat NaSi-1 protein and to characterize its expression in renal epithelial cell lines. Hexahistidyl-tagged NaSi-1 (NaSi-1-His) proteins expressed in Xenopus oocytes, appeared as two bands of about 60 and 75 kDa. PNGase F treatment shifted both bands to 57 kDa while endoglycosidase H treatment led to a downward shift of the lower molecular mass band only. Mutagenesis of a putative N-glycosylation site (N591S) produced a single band that was not shifted by endoglycosidase H or PNGase F, confirming a single glycosylation site at residue 591. Blue native-PAGE and cross-linking experiments revealed dimeric complexes, suggesting the native form of NaSi-1 to be a dimer. Transient transfection of EGFP/NaSi-1 in renal epithelial cells (OK, LLC-PK1 and MDCK) demonstrated apical membrane sorting, which was insensitive to tunicamycin. Transfection of the EGFP/NaSi-1 N591S glycosylation mutant also showed apical expression, suggesting N591 is not essential for apical sorting. Treatment with cholesterol depleting compounds did not disrupt apical sorting, but brefeldin A led to misrouting to the basolateral membrane, suggesting that NaSi-1 sorting is through the ER to Golgi pathway. Our data demonstrates that NaSi-1 forms a dimeric protein which is glycosylated at N591, whose sorting to the apical membrane in renal epithelial cells is brefeldin A-sensitive and independent of lipid rafts or glycosylation.

MeSH Terms
Animals Anticholesteremic Agents/pharmacology Brefeldin A/pharmacology Cation Transport Proteins/chemistry,genetics,metabolism Cell Line Cell Membrane/drug effects,metabolism Detergents/chemistry Dimerization Dithiothreitol/chemistry Dogs Electrophoresis, Polyacrylamide Gel Female Glycosylation Golgi Apparatus/drug effects,metabolism Kidney/cytology,metabolism Membrane Microdomains/drug effects,metabolism Oocytes/metabolism Opossums Protein Transport/drug effects Rats Sodium Sulfate Cotransporter Swine Symporters/chemistry,genetics,metabolism Tunicamycin/pharmacology Urea/chemistry Xenopus laevis
Chemicals
Anticholesteremic Agents Cation Transport Proteins Detergents Sodium Sulfate Cotransporter Symporters Tunicamycin Brefeldin A Urea Dithiothreitol
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Regeer Ralf R
Department of Physiology and Pharmacology, School of Biomedical Sciences, University of Queensland, St. Lucia, Brisbane, Qld 4072, Australia.
Nicke Annette
Markovich Daniel
Article Info
Journal
The international journal of biochemistry & cell biology
Abbr.
Int J Biochem Cell Biol
ISSN
1357-2725
Published
2007-00-00
Epub
2007-00-05
Pages
2240-51
Language
English
Region
Netherlands
NLM ID
9508482
Subset
IM
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