Membrane topography of the renal phosphate carrier NaPi-2: limited proteolysis studies
Autor: | Eric Vincent, André Dugré, Joanne Paquin, Richard Béliveau, Yansen Xiao, Christian J.C Boyer |
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Rok vydání: | 1999 |
Předmět: |
Male
Proteases Proteolysis Biophysics Kidney Biochemistry Rats Sprague-Dawley Cell membrane Structural Biology medicine Animals Chymotrypsin Trypsin Molecular Biology Binding Sites Microvilli Symporters medicine.diagnostic_test Chemistry Cell Membrane Sodium-Phosphate Cotransporter Proteins Peptide Fragments Transmembrane protein Rats Transmembrane domain medicine.anatomical_structure Symporter Electrophoresis Polyacrylamide Gel Endopeptidase K Carrier Proteins medicine.drug |
Zdroj: | Biochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology. 1431:315-328 |
ISSN: | 0167-4838 |
DOI: | 10.1016/s0167-4838(99)00060-6 |
Popis: | The rat sodium/phosphate cotransporter NaPi-2 is a 70 kDa polypeptide (p70) for which eight transmembrane segments have been predicted. We have shown that p70 exists predominantly as p45 and p40 fragments which are linked by disulfide bonds. In this work, the p40 fragment, corresponding to the C-terminus of NaPi-2, was purified from renal brush-border membranes using non-reducing and then reducing column electrophoresis followed by enzymatic deglycosylation and SDS-PAGE. The N-terminal sequence obtained for this fragment, VEAIG, indicates that the formation of p45 and p40 arises from the cleavage of p70 between arginine-319 and valine-320. In order to determine the membrane topography of NaPi-2, brush-border membrane vesicles were digested with various proteases and the transporter-derived proteolytic peptides were subsequently identified by Western blotting using N- and C-terminal-directed antibodies. Our results lead us to propose an alternative topographical model in which p45 and p40 possess three transmembrane domains each and indicate that the processing site of p70 for the generation of p45 and p40 is localized in a large protein core facing the extracellular milieu. This localization of the cleavage site indicated that NaPi-2 could either be processed intracellularly by vesicular proteases or extracellularly by secretory proteases or by brush-border membrane ectoenzymes. |
Databáze: | OpenAIRE |
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