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dc.contributor.authorToustrup-Jensen, MS
dc.contributor.authorEinholm, AP
dc.contributor.authorSchack, VR
dc.contributor.authorNielsen, HN
dc.contributor.authorHolm, R
dc.contributor.authorSobrido Gómez, María Jesús 
dc.contributor.authorAndersen, JP
dc.contributor.authorClausen, T
dc.contributor.authorVilsen, B
dc.date.accessioned2017-06-07T07:25:25Z
dc.date.available2017-06-07T07:25:25Z
dc.date.issued2014
dc.identifier.issn0021-9258
dc.identifier.urihttp://hdl.handle.net/20.500.11940/6257
dc.description.abstractThe neurological disorders familial hemiplegic migraine type 2 (FHM2), alternating hemiplegia of childhood (AHC), and rapid-onset dystonia parkinsonism (RDP) are caused by mutations of Na(+),K(+)-ATPase α2 and α3 isoforms, expressed in glial and neuronal cells, respectively. Although these disorders are distinct, they overlap in phenotypical presentation. Two Na(+),K(+)-ATPase mutations, extending the C terminus by either 28 residues ("+28" mutation) or an extra tyrosine ("+Y"), are associated with FHM2 and RDP, respectively. We describe here functional consequences of these and other neurological disease mutations as well as an extension of the C terminus only by a single alanine. The dependence of the mutational effects on the specific α isoform in which the mutation is introduced was furthermore studied. At the cellular level we have characterized the C-terminal extension mutants and other mutants, addressing the question to what extent they cause a change of the intracellular Na(+) and K(+) concentrations ([Na(+)]i and [K(+)]i) in COS cells. C-terminal extension mutants generally showed dramatically reduced Na(+) affinity without disturbance of K(+) binding, as did other RDP mutants. No phosphorylation from ATP was observed for the +28 mutation of α2 despite a high expression level. A significant rise of [Na(+)]i and reduction of [K(+)]i was detected in cells expressing mutants with reduced Na(+) affinity and did not require a concomitant reduction of the maximal catalytic turnover rate or expression level. Moreover, two mutations that increase Na(+) affinity were found to reduce [Na(+)]i. It is concluded that the Na(+) affinity of the Na(+),K(+)-ATPase is an important determinant of [Na(+)]i.
dc.language.isoeng
dc.subject.meshAnimals
dc.subject.meshCOS Cells
dc.subject.meshChlorocebus aethiops
dc.subject.meshDystonic Disorders
dc.subject.meshHumans
dc.subject.meshIon Transport
dc.subject.meshMigraine with Aura
dc.subject.meshMutation, Missense
dc.subject.meshPotassium
dc.subject.meshProtein Structure, Tertiary
dc.subject.meshRats
dc.subject.meshSodium
dc.subject.meshSodium-Potassium-Exchanging ATPase
dc.subject.meshEnzyme Mutation
dc.subject.meshFamilial Hemiplegic Migraine
dc.subject.meshIntracellular Sodium
dc.subject.meshMembrane Transport
dc.subject.meshNa,K-ATPase
dc.subject.meshNeurological Diseases
dc.subject.meshRapid-onset Dystonia Parkinsonism
dc.subject.meshSodium Transport
dc.titleRelationship between Intracellular Na+ Concentration and Reduced Na+ Affinity in Na+,K+-ATPase Mutants Causing Neurological Disease
dc.typeArtigoes
dc.authorsophosToustrup-Jensen, MS
dc.authorsophosEinholm, AP
dc.authorsophosSchack, VR
dc.authorsophosNielsen, HN
dc.authorsophosHolm, R
dc.authorsophosSobrido, MJ
dc.authorsophosAndersen, JP
dc.authorsophosClausen, T
dc.authorsophosVilsen, B
dc.identifier.doi10.1074/jbc.M113.543272
dc.identifier.isi331368700008
dc.identifier.pmid24356962
dc.identifier.sophos16400
dc.issue.number6
dc.journal.titleJOURNAL OF BIOLOGICAL CHEMISTRY
dc.organizationConsellería de Sanidade::Fundación pública Galega de Medicina Xenómica
dc.organizationServizo Galego de Saúde::Estrutura de Xestión Integrada (EOXI)::EOXI de Santiago::IDIS.- Instituto de investigaciones sanitarias de Santiago
dc.page.initial3186
dc.page.final3197
dc.rights.accessRightsopenAccess
dc.typesophosArtículo Original
dc.volume.number289


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