Literature DB >> 9755071

Purification of active Na+-K+-ATPase using a new ouabain-affinity column.

D R Yingst1, S Y Yang, R Schiebinger.   

Abstract

Ouabain, a specific inhibitor of Na+-K+-ATPase, was coupled to epoxy agarose via a 13-atom spacer to make an affinity column that specifically binds Na+-K+-ATPase. Na+-K+-ATPase from rat and dog kidney was bound to the column and was eluted as a function of enzyme conformation, altered by adding specific combinations of ligands. Na+-K+-ATPase from both sources bound to the column in the presence of Na + ATP + Mg and in solutions containing 30 mM K. No binding was observed in the presence of Na or Na + ATP. These experiments suggest that Na+-K+-ATPase binds to the column under the same conditions that it binds to untethered ouabain. Na+-K+-ATPase already bound to the column was competitively eluted with excess free Na + ouabain or with Na + ATP. The latter eluted active enzyme. For comparable amounts of bound Na+-K+-ATPase, Na + ouabain and Na + ATP eluted more rat than dog Na+-K+-ATPase, consistent with the lower affinity of the rat Na+-K+-ATPase for ouabain. The ouabain-affinity column was used to purify active Na+-K+-ATPase from rat kidney microsomes and rat adrenal glomerulosa cells. The specific activity of the kidney enzyme was increased from approximately 2 to 15 micromol Pi . mg-1 . min-1. Na+-K+-ATPase purified from glomerulosa cells that were prelabeled with [32P]orthophosphate was phosphorylated on the alpha-subunit, suggesting that these cells contain a kinase that phosphorylates Na+-K+-ATPase.

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Year:  1998        PMID: 9755071     DOI: 10.1152/ajpcell.1998.275.4.C1167

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  5 in total

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4.  Angiotensin II stimulates elution of Na-K-ATPase from a digoxin-affinity column by increasing the kinetic response to ligands that trigger the decay of E2-P.

Authors:  Douglas R Yingst; Tabitha M Doci; Katherine J Massey; Noreen F Rossi; Ebony Rucker; Raymond R Mattingly
Journal:  Am J Physiol Renal Physiol       Date:  2008-02-13

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  5 in total

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