dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorUniversidad San Sebastián
dc.creatorDe La Fuente-Ortega, Erwin
dc.creatorGravotta, Diego
dc.creatorBay, Andres Perez
dc.creatorBenedicto, Ignacio
dc.creatorCarvajal-Gonzalez, Jose Maria
dc.creatorLehmann, Guillermo L.
dc.creatorLagos, Carlos F.
dc.creatorRodríguez-Boulan, Enrique
dc.date.accessioned2023-05-24T04:46:33Z
dc.date.available2023-05-24T04:46:33Z
dc.date.created2023-05-24T04:46:33Z
dc.date.issued2015-05-01
dc.identifier1059-1524
dc.identifierhttps://repositorio.uss.cl/handle/uss/5965
dc.identifier10.1091/mbc.E15-01-0047
dc.description.abstractIn spite of the many key cellular functions of chloride channels, the mechanisms that mediate their subcellular localization are largely unknown. ClC-2 is a ubiquitous chloride channel usually localized to the basolateral domain of epithelia that regulates cell volume, ion transport, and acid-base balance; mice knocked out for ClC-2 are blind and sterile. Previous work suggested that CLC-2 is sorted basolaterally by TIFS812LL, a dileucine motif in CLC-2's C-terminal domain. However, our in silico modeling of ClC-2 suggested that this motif was buried within the channel's dimerization interface and identified two cytoplasmically exposed dileucine motifs, ESMI623LL and QVVA635LL, as candidate sorting signals. Alanine mutagenesis and trafficking assays support a scenario in which ESMI623LL acts as the authentic basolateral signal of ClC-2. Silencing experiments and yeast three-hybrid assays demonstrated that both ubiquitous (AP-1A) and epithelium-specific (AP-1B) forms of the tetrameric clathrin adaptor AP-1 are capable of carrying out basolateral sorting of ClC-2 through interactions of ESMI623LL with a highly conserved pocket in their aγ1-σ1A hemicomplex.
dc.languageeng
dc.relationMolecular Biology of the Cell
dc.titleBasolateral sorting of chloride channel 2 is mediated by interactions between a dileucine motif and the clathrin adaptor AP-1
dc.typeArtículo


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