Involvement of protons in the ion transport cycle of Na+ ,K+-ATPase

dc.contributor.authorGrishanin, Kirill O.deu
dc.contributor.authorTashkin, V. Yu.deu
dc.contributor.authorLenz, Alexander A.deu
dc.contributor.authorApell, Hans-Jürgen
dc.contributor.authorSokolov, Valerij S.deu
dc.date.accessioned2011-03-24T17:43:01Zdeu
dc.date.available2011-05-31T22:25:04Zdeu
dc.date.issued2010deu
dc.description.abstractThe effect of pH on electrogenic sodium transport by the Na+,K+-ATPase has been studied. Experiments were carried out by admittance recording in a model system consisting of a bilayer lipid membrane with adsorbed membrane fragments containing purified Na+,K+-ATPase. Changes in the membrane admittance (capacitance and conductance increments in response to photo-induced release of ATP from caged ATP) were measured as function of AC voltage frequency, sodium ion concentration, and pH. In solutions containing 150 mM Na+, the frequency dependence of capacitance increments was not significantly dependent on pH in the range between 6 and 8. At a low NaCl concentration (3 mM), the capacitance increments at low frequencies decreased with the increasing pH. In the absence of NaCl, the frequency-dependent capacitance increment at low frequencies was similar to that measured in the presence of 3 mM NaCl. These results may be explained by involvement of protons in the Na+,K+-ATPase pump cycle, i.e., electroneutral exchange of sodium ions for protons under physiological conditions, electrogenic transport of sodium ions at high pH, and electrogenic transport of protons at low concentrations (and in the absence) of sodium ions.eng
dc.description.versionpublished
dc.format.mimetypeapplication/pdfdeu
dc.identifier.citationPubl. in: Biochemistry (Moscow) : Supplement Series A ; 4 (2010), 4. - pp. 397-402deu
dc.identifier.doi10.1134/S1990747810040100
dc.identifier.ppn336207018deu
dc.identifier.urihttp://kops.uni-konstanz.de/handle/123456789/8369
dc.language.isoengdeu
dc.legacy.dateIssued2011deu
dc.rightsterms-of-usedeu
dc.rights.urihttps://rightsstatements.org/page/InC/1.0/deu
dc.subjectpH - protons - Na+deu
dc.subjectK+-ATPasedeu
dc.subjectelectrogenicitydeu
dc.subjectelectroneutralitydeu
dc.subject.ddc570deu
dc.titleInvolvement of protons in the ion transport cycle of Na+ ,K+-ATPaseeng
dc.typeJOURNAL_ARTICLEdeu
dspace.entity.typePublication
kops.citation.bibtex
@article{Grishanin2010Invol-8369,
  year={2010},
  doi={10.1134/S1990747810040100},
  title={Involvement of protons in the ion transport cycle of Na+ ,K+-ATPase},
  number={4},
  volume={4},
  issn={1990-7478},
  journal={Biochemistry (Moscow) : Supplement Series A)},
  pages={397--402},
  author={Grishanin, Kirill O. and Tashkin, V. Yu. and Lenz, Alexander A. and Apell, Hans-Jürgen and Sokolov, Valerij S.}
}
kops.citation.iso690GRISHANIN, Kirill O., V. Yu. TASHKIN, Alexander A. LENZ, Hans-Jürgen APELL, Valerij S. SOKOLOV, 2010. Involvement of protons in the ion transport cycle of Na+ ,K+-ATPase. In: Biochemistry (Moscow) : Supplement Series A). 2010, 4(4), pp. 397-402. ISSN 1990-7478. eISSN 1990-7494. Available under: doi: 10.1134/S1990747810040100deu
kops.citation.iso690GRISHANIN, Kirill O., V. Yu. TASHKIN, Alexander A. LENZ, Hans-Jürgen APELL, Valerij S. SOKOLOV, 2010. Involvement of protons in the ion transport cycle of Na+ ,K+-ATPase. In: Biochemistry (Moscow) : Supplement Series A). 2010, 4(4), pp. 397-402. ISSN 1990-7478. eISSN 1990-7494. Available under: doi: 10.1134/S1990747810040100eng
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    <dcterms:abstract xml:lang="eng">The effect of pH on electrogenic sodium transport by the Na+,K+-ATPase has been studied. Experiments were carried out by admittance recording in a model system consisting of a bilayer lipid membrane with adsorbed membrane fragments containing purified Na+,K+-ATPase. Changes in the membrane admittance (capacitance and conductance increments in response to photo-induced release of ATP from caged ATP) were measured as function of AC voltage frequency, sodium ion concentration, and pH. In solutions containing 150 mM Na+, the frequency dependence of capacitance increments was not significantly dependent on pH in the range between 6 and 8. At a low NaCl concentration (3 mM), the capacitance increments at low frequencies decreased with the increasing pH. In the absence of NaCl, the frequency-dependent capacitance increment at low frequencies was similar to that measured in the presence of 3 mM NaCl. These results may be explained by involvement of protons in the Na+,K+-ATPase pump cycle, i.e., electroneutral exchange of sodium ions for protons under physiological conditions, electrogenic transport of sodium ions at high pH, and electrogenic transport of protons at low concentrations (and in the absence) of sodium ions.</dcterms:abstract>
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kops.sourcefieldBiochemistry (Moscow) : Supplement Series A). 2010, <b>4</b>(4), pp. 397-402. ISSN 1990-7478. eISSN 1990-7494. Available under: doi: 10.1134/S1990747810040100deu
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