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The Role of Na,k-Atpase α Subunit Serine 775 and Glutamate 779 in Determining the Extracellular K(+)And Membrane Potential–Dependent Properties of the Na,k -Pump

The roles of Ser775 and Glu779, two amino acids in the putative fifth transmembrane segment of the Na,K -ATPase α subunit, in determining the voltage and extracellular K (+) (K (+) (o)) dependence of enzyme-mediated ion transport, were examined in this study. HeLa cells expressing the α1 subunit of...

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Autores principales: Peluffo, R. Daniel, Argüello, José M., Berlin, Joshua R.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2000
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2229616/
https://www.ncbi.nlm.nih.gov/pubmed/10871639
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author Peluffo, R. Daniel
Argüello, José M.
Berlin, Joshua R.
author_facet Peluffo, R. Daniel
Argüello, José M.
Berlin, Joshua R.
author_sort Peluffo, R. Daniel
collection PubMed
description The roles of Ser775 and Glu779, two amino acids in the putative fifth transmembrane segment of the Na,K -ATPase α subunit, in determining the voltage and extracellular K (+) (K (+) (o)) dependence of enzyme-mediated ion transport, were examined in this study. HeLa cells expressing the α1 subunit of sheep Na,K -ATPase were voltage clamped via patch electrodes containing solutions with 115 mM Na(+) (37°C). Na,K -pump current produced by the ouabain-resistant control enzyme (RD), containing amino acid substitutions Gln111Arg and Asn122Asp, displayed a membrane potential and K (+) (o) dependence similar to wild-type Na,K -ATPase during superfusion with 0 and 148 mM Na(+)-containing salt solutions. Additional substitution of alanine at Ser775 or Glu779 produced 155- and 15-fold increases, respectively, in the K (+) (o) concentration that half-maximally activated Na,K -pump current at 0 mV in extracellular Na(+)-free solutions. However, the voltage dependence of Na,K -pump current was unchanged in RD and alanine-substituted enzymes. Thus, large changes in apparent K (+) (o) affinity could be produced by mutations in the fifth transmembrane segment of the Na,K -ATPase with little effect on voltage-dependent properties of K (+) transport. One interpretation of these results is that protein structures responsible for the kinetics of K (+) (o) binding and/or occlusion may be distinct, at least in part, from those that are responsible for the voltage dependence of K (+) (o) binding to the Na,K -ATPase.
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spelling pubmed-22296162008-04-22 The Role of Na,k-Atpase α Subunit Serine 775 and Glutamate 779 in Determining the Extracellular K(+)And Membrane Potential–Dependent Properties of the Na,k -Pump Peluffo, R. Daniel Argüello, José M. Berlin, Joshua R. J Gen Physiol Original Article The roles of Ser775 and Glu779, two amino acids in the putative fifth transmembrane segment of the Na,K -ATPase α subunit, in determining the voltage and extracellular K (+) (K (+) (o)) dependence of enzyme-mediated ion transport, were examined in this study. HeLa cells expressing the α1 subunit of sheep Na,K -ATPase were voltage clamped via patch electrodes containing solutions with 115 mM Na(+) (37°C). Na,K -pump current produced by the ouabain-resistant control enzyme (RD), containing amino acid substitutions Gln111Arg and Asn122Asp, displayed a membrane potential and K (+) (o) dependence similar to wild-type Na,K -ATPase during superfusion with 0 and 148 mM Na(+)-containing salt solutions. Additional substitution of alanine at Ser775 or Glu779 produced 155- and 15-fold increases, respectively, in the K (+) (o) concentration that half-maximally activated Na,K -pump current at 0 mV in extracellular Na(+)-free solutions. However, the voltage dependence of Na,K -pump current was unchanged in RD and alanine-substituted enzymes. Thus, large changes in apparent K (+) (o) affinity could be produced by mutations in the fifth transmembrane segment of the Na,K -ATPase with little effect on voltage-dependent properties of K (+) transport. One interpretation of these results is that protein structures responsible for the kinetics of K (+) (o) binding and/or occlusion may be distinct, at least in part, from those that are responsible for the voltage dependence of K (+) (o) binding to the Na,K -ATPase. The Rockefeller University Press 2000-07-01 /pmc/articles/PMC2229616/ /pubmed/10871639 Text en © 2000 The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Original Article
Peluffo, R. Daniel
Argüello, José M.
Berlin, Joshua R.
The Role of Na,k-Atpase α Subunit Serine 775 and Glutamate 779 in Determining the Extracellular K(+)And Membrane Potential–Dependent Properties of the Na,k -Pump
title The Role of Na,k-Atpase α Subunit Serine 775 and Glutamate 779 in Determining the Extracellular K(+)And Membrane Potential–Dependent Properties of the Na,k -Pump
title_full The Role of Na,k-Atpase α Subunit Serine 775 and Glutamate 779 in Determining the Extracellular K(+)And Membrane Potential–Dependent Properties of the Na,k -Pump
title_fullStr The Role of Na,k-Atpase α Subunit Serine 775 and Glutamate 779 in Determining the Extracellular K(+)And Membrane Potential–Dependent Properties of the Na,k -Pump
title_full_unstemmed The Role of Na,k-Atpase α Subunit Serine 775 and Glutamate 779 in Determining the Extracellular K(+)And Membrane Potential–Dependent Properties of the Na,k -Pump
title_short The Role of Na,k-Atpase α Subunit Serine 775 and Glutamate 779 in Determining the Extracellular K(+)And Membrane Potential–Dependent Properties of the Na,k -Pump
title_sort role of na,k-atpase α subunit serine 775 and glutamate 779 in determining the extracellular k(+)and membrane potential–dependent properties of the na,k -pump
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2229616/
https://www.ncbi.nlm.nih.gov/pubmed/10871639
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