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Functional expression of rat renal Na/Pi-cotransport (NaPi-2) in Sf9 cells by the baculovirus system
Authors:M Fucentese  K Winterhalter  H Murer  J Biber
Institution:(1) Laboratory of Biochemistry I, ETH-Zürich, 8057 Zürich, Switzerland;(2) Institute of Physiology, University of Zürich, ETH-Zürich, 8057 Zürich, Switzerland
Abstract:The recently cloned Na/P i -cotransport system NaPi-2 is an apical membrane protein of rat proximal tubular cells and is involved in proximal phosphate reabsorption. To make the protein available for further functional/structural studies, this transport system has been expressed in Sf9 insect cells using a recombinant baculovirus. Sf9 cells infected with NaPi-2 (or 6His tagged NaPi-2) expressed functional Na/P i -cotransport up to 20- to 50-fold over noninfected Sf9 cells. Transport of phosphate in infected cells was highly dependent on sodium, exhibited a K m for P i of 0.114 mm and an apparent K m for Na of 63 mm (Hill coefficient of approximately 3) and was stimulated by high external pH. Infected cells expressed a polypeptide of 65 kDa representing a nonglycosylated form of the 85 kDa mature NaPi-2 transporter as present in proximal tubular brush-border membranes. By confocal microscopy expression of NaPi-2 protein was observed in the plasma membrane, yet submembranous accumulation of NaPi-2 protein could not be excluded. This demonstrates that the rat proximal tubular Na/P i -cotransport system NaPi-2 can be successfully expressed in Sf9 cells with characteristics similar to that in isolated brush-border membranes. The 6His tagging will permit isolation of the NaPi-2 cotransporter in amounts sufficient for structural/functional studies.We would like to thank W. Scherle and M. Lötscher (Institute of Anatomy) for their generous help using the confocal microscope and Ch. Gasser for the art work. Financial support by the Swiss National Fonds Grant No. 32-30785.91 (to H.M.) and 32-28664.90 (to J.B.)] and by ldquoStiftung für wissenschaftliche Forschung an der Universitát Zürichrdquo is greatly acknowledged.
Keywords:Renal Na/P i -cotransport  Sf9 cells  Infection
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