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dc.contributor.authorChi, Gamma
dc.contributor.authorEbenhoch, Rebecca
dc.contributor.authorMan, Henry
dc.contributor.authorTang, Haiping
dc.contributor.authorTremblay, Laurence
dc.contributor.authorReggiano, Gabriella
dc.contributor.authorQiu, Xingyu
dc.contributor.authorBohstedt, Tina
dc.contributor.authorLiko, Idlir
dc.contributor.authorAlmeida, Fernando G
dc.contributor.authorGarneau, Alexandre
dc.contributor.authorWang, Dong
dc.contributor.authorMcKinley, Gavin
dc.contributor.authorMoreau, Christophe P.
dc.contributor.authorBountra, Kiran D.
dc.contributor.authorAbrusci, Patrizia
dc.contributor.authorMukhopadhyay, Shubhashish M. M.
dc.contributor.authorFernandez-Cid, Alejandra
dc.contributor.authorSlimani, Samira
dc.contributor.authorLavoie, Julie
dc.contributor.authorBurgess-Brown, Nicola A.
dc.contributor.authorTehan, Ben
dc.contributor.authorDiMaio, Frank
dc.contributor.authorJazayeri, Ali
dc.contributor.authorIsenring, Paul
dc.contributor.authorRobinson, Carol V.
dc.contributor.authorDurr, Katharina L.
dc.date.accessioned2022-10-31T13:33:52Z
dc.date.availableNO_RESTRICTIONfr
dc.date.available2022-10-31T13:33:52Z
dc.date.issued2021-05-25
dc.identifier.urihttp://hdl.handle.net/1866/26997
dc.rightsCe document est mis à disposition selon les termes de la Licence Creative Commons Paternité 4.0 International. / This work is licensed under a Creative Commons Attribution 4.0 International License.
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.subjectHDX-MSfr
dc.subjectNucleotide bindingfr
dc.subjectPhospho-regulationfr
dc.subjectPotassium-chloride co-transportfr
dc.subjectSolute carrierfr
dc.titlePhospho-regulation, nucleotide binding and ion access control in potassium-chloride cotransportersfr
dc.typeArticlefr
dc.contributor.affiliationUniversité de Montréal. Faculté de médecine. École de kinésiologie et des sciences de l'activité physiquefr
dc.identifier.doi10.15252/embj.2020107294
dcterms.abstractPotassium-coupled chloride transporters (KCCs) play crucial roles in regulating cell volume and intracellular chloride concentration. They are characteristically inhibited under isotonic conditions via phospho-regulatory sites located within the cytoplasmic termini. Decreased inhibitory phosphorylation in response to hypotonic cell swelling stimulates transport activity, and dysfunction of this regulatory process has been associated with various human diseases. Here, we present cryo-EM structures of human KCC3b and KCC1, revealing structural determinants for phosphoregulation in both N- and C-termini. We show that phosphomimetic KCC3b is arrested in an inward-facing state in which intracellular ion access is blocked by extensive contacts with the N-terminus. In another mutant with increased isotonic transport activity, KCC1D19, this interdomain interaction is absent, likely due to a unique phospho-regulatory site in the KCC1 N-terminus. Furthermore, we map additional phosphorylation sites as well as a previously unknown ATP/ADP-binding pocket in the large Cterminal domain and show enhanced thermal stabilization of other CCCs by adenine nucleotides. These findings provide fundamentally new insights into the complex regulation of KCCs and may unlock innovative strategies for drug development.fr
dcterms.isPartOfurn:ISSN:0261-4189fr
dcterms.isPartOfurn:ISSN:1460-2075fr
dcterms.languageengfr
UdeM.ReferenceFournieParDeposanthttps://doi.org/10.15252/embj.2020107294fr
UdeM.VersionRioxxVersion publiée / Version of Recordfr
oaire.citationTitleEMBO journalfr
oaire.citationVolume40fr


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Ce document est mis à disposition selon les termes de la Licence Creative Commons
Paternité 4.0 International. / This work is licensed under a Creative Commons Attribution 4.0
International License.
Usage rights : Ce document est mis à disposition selon les termes de la Licence Creative Commons Paternité 4.0 International. / This work is licensed under a Creative Commons Attribution 4.0 International License.