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dc.contributor.author Csanády, László
dc.contributor.author Töröcsik, Beáta
dc.date.accessioned 2019-12-09T07:30:19Z
dc.date.available 2019-12-09T07:30:19Z
dc.date.issued 2019
dc.identifier 85068884645
dc.identifier.citation journalVolume=8;journalTitle=ELIFE;pagination=e46450, pages: 18;;journalAbbreviatedTitle=ELIFE;
dc.identifier.uri http://repo.lib.semmelweis.hu//handle/123456789/7550
dc.identifier.uri doi:10.7554/eLife.46450
dc.description.abstract The devastating inherited disease cystic fibrosis (CF) is caused by mutations of the Cystic Fibrosis Transmembrane Conductance Regulator (CFTR) anion channel. The recent approval of the CFTR potentiator drug ivacaftor (Vx-770) for the treatment of CF patients has marked the advent of causative CF therapy. Currently, thousands of patients are being treated with the drug, and its molecular mechanism of action is under intensive investigation. Here we determine the solubility profile and true stimulatory potency of Vx-770 towards wild-type (WT) and mutant human CFTR channels in cell-free patches of membrane. We find that its aqueous solubility is ~200 fold lower (~60 nanomolar), whereas the potency of its stimulatory effect is >100 fold higher, than reported, and is unexpectedly fully reversible. Strong, but greatly delayed, channel activation by picomolar Vx-770 identifies multiple sequential slow steps in the activation pathway. These findings provide solid guidelines for the design of in vitro studies using Vx-770. © 2019, Csanády and Töröcsik.
dc.format.extent 1-18
dc.relation.ispartof urn:issn:2050-084X
dc.title Cystic fibrosis drug ivacaftor stimulates CFTR channels at picomolar concentrations
dc.type Journal Article
dc.date.updated 2019-08-28T13:04:34Z
dc.language.rfc3066 en
dc.rights.holder NULL
dc.identifier.mtmt 30775333
dc.contributor.department SE/AOK/I/Orvosi Biokémiai Intézet
dc.contributor.institution Semmelweis Egyetem


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