Binding of Sodium Ions and Cardiotonic Steroids to Native and Selectively Trypsinized Na,K Pump, Detected by Charge Movements

dc.contributor.authorSchwappach, Blanchedeu
dc.contributor.authorStürmer, Wernerdeu
dc.contributor.authorApell, Hans-Jürgen
dc.contributor.authorKarlish, Steven J. D.deu
dc.date.accessioned2011-03-24T17:37:26Zdeu
dc.date.available2011-03-24T17:37:26Zdeu
dc.date.issued1994deu
dc.description.abstractA fluorescent dye, RH421, has been used to characterize charge movements associated with cation and cardiotonic steroid binding to Na,K-ATPase and to a specifically trypsinized preparation, so-called "19-kDa membranes." A fluorescence decrease induced by Na+ is attributed to electrogenic binding of one Na+ ion from the cytoplasm. The apparent affinity for Na+ is the same in both preparations. (ATP + Na + Mg) or (Pi + Mg)-induced fluorescence signals observed with native enzyme are not observed in 19-kDa membranes, consistent with loss of ATP binding and phosphorylation. Cardiotonic steroids (CS) bind to native enzyme and 19-kDa membranes as judged by RH421 signals, fluorescence of anthroyl ouabain, anidn hibition of Rb+ occlusion. Binding affinities to both preparations are in the micromolar range, and bindingis prevented by the presence of Na+ or K+. The kinetics of glycone binding and dissociation are identical in both preparations, but aglycones bind and dissociate about 6-foldf aster to 19-kDa membranes. Binding of Na+ and cardiotonic steroids is inactivated upon heating or extensive Pronase digestion of 19-kDa membranes. This suggests that cation and CS binding depend on the structural integrity of a complex of the proteolytic fragments, and that sites for both cations or CS consist of ligating groups located on more than one fragments of 19-kDa membranes.eng
dc.description.versionpublished
dc.format.mimetypeapplication/pdfdeu
dc.identifier.citationFirst publ. in: The Journal of Biological Chemistry 269 (1994), 26, pp. 21620-21626deu
dc.identifier.ppn27413666Xdeu
dc.identifier.urihttp://kops.uni-konstanz.de/handle/123456789/7774
dc.language.isoengdeu
dc.legacy.dateIssued2007deu
dc.rightsAttribution-NonCommercial-NoDerivs 2.0 Generic
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/2.0/
dc.subject.ddc570deu
dc.titleBinding of Sodium Ions and Cardiotonic Steroids to Native and Selectively Trypsinized Na,K Pump, Detected by Charge Movementseng
dc.typeJOURNAL_ARTICLEdeu
dspace.entity.typePublication
kops.citation.bibtex
@article{Schwappach1994Bindi-7774,
  year={1994},
  title={Binding of Sodium Ions and Cardiotonic Steroids to Native and Selectively Trypsinized Na,K Pump, Detected by Charge Movements},
  number={26},
  volume={269},
  journal={The Journal of Biological Chemistry},
  pages={21620--21626},
  author={Schwappach, Blanche and Stürmer, Werner and Apell, Hans-Jürgen and Karlish, Steven J. D.}
}
kops.citation.iso690SCHWAPPACH, Blanche, Werner STÜRMER, Hans-Jürgen APELL, Steven J. D. KARLISH, 1994. Binding of Sodium Ions and Cardiotonic Steroids to Native and Selectively Trypsinized Na,K Pump, Detected by Charge Movements. In: The Journal of Biological Chemistry. 1994, 269(26), pp. 21620-21626deu
kops.citation.iso690SCHWAPPACH, Blanche, Werner STÜRMER, Hans-Jürgen APELL, Steven J. D. KARLISH, 1994. Binding of Sodium Ions and Cardiotonic Steroids to Native and Selectively Trypsinized Na,K Pump, Detected by Charge Movements. In: The Journal of Biological Chemistry. 1994, 269(26), pp. 21620-21626eng
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    <dcterms:abstract xml:lang="eng">A fluorescent dye, RH421, has been used to characterize charge movements associated with cation and cardiotonic steroid binding to Na,K-ATPase and to a specifically trypsinized preparation, so-called "19-kDa membranes." A fluorescence decrease induced by Na+ is attributed to electrogenic binding of one Na+ ion from the cytoplasm. The apparent affinity for Na+ is the same in both preparations. (ATP + Na + Mg) or (Pi + Mg)-induced fluorescence signals observed with native enzyme are not observed in 19-kDa membranes, consistent with loss of ATP binding and phosphorylation. Cardiotonic steroids (CS) bind to native enzyme and 19-kDa membranes as judged by RH421 signals, fluorescence of anthroyl ouabain, anidn hibition of Rb+ occlusion. Binding affinities to both preparations are in the micromolar range, and bindingis prevented by the presence of Na+ or K+. The kinetics of glycone binding and dissociation are identical in both preparations, but aglycones bind and dissociate about 6-foldf aster to 19-kDa membranes. Binding of Na+ and cardiotonic steroids is inactivated upon heating or extensive Pronase digestion of 19-kDa membranes. This suggests that cation and CS binding depend on the structural integrity of a complex of the proteolytic fragments, and that sites for both cations or CS consist of ligating groups located on more than one fragments of 19-kDa membranes.</dcterms:abstract>
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kops.sourcefieldThe Journal of Biological Chemistry. 1994, <b>269</b>(26), pp. 21620-21626deu
kops.sourcefield.plainThe Journal of Biological Chemistry. 1994, 269(26), pp. 21620-21626deu
kops.sourcefield.plainThe Journal of Biological Chemistry. 1994, 269(26), pp. 21620-21626eng
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