Please use this identifier to cite or link to this item: https://ahro.austin.org.au/austinjspui/handle/1/10329
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dc.contributor.authorFraser, Scott A-
dc.contributor.authorGimenez, Ignacio-
dc.contributor.authorCook, Natasha-
dc.contributor.authorJennings, Ian-
dc.contributor.authorKaterelos, Marina-
dc.contributor.authorKatsis, Frosa-
dc.contributor.authorLevidiotis, Vicki-
dc.contributor.authorKemp, Bruce E-
dc.contributor.authorPower, David Anthony-
dc.date.accessioned2015-05-15T23:44:54Z
dc.date.available2015-05-15T23:44:54Z
dc.date.issued2007-07-01-
dc.identifier.citationThe Biochemical Journal; 405(1): 85-93en_US
dc.identifier.otherPUBMEDen
dc.identifier.urihttps://ahro.austin.org.au/austinjspui/handle/1/10329en
dc.description.abstractThe renal-specific NKCC2 (Na+-K+-2Cl- co-transporter 2) is regulated by changes in phosphorylation state, however, the phosphorylation sites and kinases responsible have not been fully elucidated. In the present study, we demonstrate that the metabolic sensing kinase AMPK (AMP-activated protein kinase) phosphorylates NKCC2 on Ser126 in vitro. Co-precipitation experiments indicated that there is a physical association between AMPK and the N-terminal cytoplasmic domain of NKCC2. Activation of AMPK in the MMDD1 (mouse macula densa-derived 1) cell line resulted in an increase in Ser126 phosphorylation in situ, suggesting that AMPK may phosphorylate NKCC2 in vivo. The functional significance of Ser126 phosphorylation was examined by mutating the serine residue to an alanine residue resulting in a marked reduction in co-transporter activity when exogenously expressed in Xenopus laevis oocytes under isotonic conditions. Under hypertonic conditions no significant change of activity was observed. Therefore the present study identifies a novel phosphorylation site that maintains NKCC2-mediated transport under isotonic or basal conditions. Moreover, the metabolic-sensing kinase, AMPK, is able to phosphorylate this site, potentially linking the cellular energy state with changes in co-transporter activity.en_US
dc.language.isoenen
dc.subject.otherAMP-Activated Protein Kinasesen
dc.subject.otherAmino Acid Sequenceen
dc.subject.otherAnimalsen
dc.subject.otherAntibodies, Phospho-Specific.metabolismen
dc.subject.otherCell Lineen
dc.subject.otherEnzyme Activationen
dc.subject.otherHumansen
dc.subject.otherKidney.metabolismen
dc.subject.otherMiceen
dc.subject.otherMolecular Sequence Dataen
dc.subject.otherMultienzyme Complexes.genetics.metabolismen
dc.subject.otherOocytes.cytology.physiologyen
dc.subject.otherPhosphorylationen
dc.subject.otherProtein-Serine-Threonine Kinases.genetics.metabolismen
dc.subject.otherRecombinant Fusion Proteins.genetics.metabolismen
dc.subject.otherReproducibility of Resultsen
dc.subject.otherRubidium.metabolismen
dc.subject.otherSequence Alignmenten
dc.subject.otherSerine.metabolismen
dc.subject.otherSodium-Potassium-Chloride Symporters.genetics.metabolismen
dc.subject.otherSolute Carrier Family 12, Member 1en
dc.subject.otherXenopus laevisen
dc.titleRegulation of the renal-specific Na+-K+-2Cl- co-transporter NKCC2 by AMP-activated protein kinase (AMPK).en_US
dc.typeJournal Articleen_US
dc.identifier.journaltitleThe Biochemical Journalen_US
dc.identifier.affiliationAustin Healthen_US
dc.identifier.affiliationThe Burnet Research Institute, Austin Health, Studley Road, Heidelberg, Victoria 3084, Australiaen_US
dc.identifier.doi10.1042/BJ20061850en_US
dc.description.pages85-93en
dc.relation.urlhttps://pubmed.ncbi.nlm.nih.gov/17341212en
dc.type.contentTexten_US
dc.type.austinJournal Articleen
local.name.researcherCook, Natasha
item.openairetypeJournal Article-
item.cerifentitytypePublications-
item.grantfulltextnone-
item.fulltextNo Fulltext-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
item.languageiso639-1en-
crisitem.author.deptNephrology-
crisitem.author.deptInstitute for Breathing and Sleep-
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