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http://purl.uniprot.org/citations/15347651http://www.w3.org/1999/02/22-rdf-syntax-ns#typehttp://purl.uniprot.org/core/Journal_Citation
http://purl.uniprot.org/citations/15347651http://www.w3.org/1999/02/22-rdf-syntax-ns#typehttp://purl.uniprot.org/core/Journal_Citation
http://purl.uniprot.org/citations/15347651http://www.w3.org/2000/01/rdf-schema#comment"Photoisomerization of rhodopsin activates a heterotrimeric G-protein cascade leading to closure of cGMP-gated channels and hyperpolarization of photoreceptor cells. Massive translocation of the visual G-protein transducin, Gt, between subcellular compartments contributes to long term adaptation of photoreceptor cells. Ca(2+)-triggered assembly of a centrin-transducin complex in the connecting cilium of photoreceptor cells may regulate these transducin translocations. Here we demonstrate expression of all four known, closely related centrin isoforms in the mammalian retina. Interaction assays revealed binding potential of the four centrin isoforms to Gtbetagamma heterodimers. High affinity binding to Gtbetagamma and subcellular localization of the centrin isoforms Cen1 and Cen2 in the connecting cilium indicated that these isoforms contribute to the centrin-transducin complex and potentially participate in the regulation of transducin translocation through the photoreceptor cilium. Binding of Cen2 and Cen4 to Gbetagamma of non-visual G-proteins may additionally regulate G-proteins involved in centrosome and basal body functions."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.org/dc/terms/identifier"doi:10.1074/jbc.m406770200"xsd:string
http://purl.uniprot.org/citations/15347651http://purl.org/dc/terms/identifier"doi:10.1074/jbc.m406770200"xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Park J.H."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Park J.H."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Giessl A."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Giessl A."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Wolfrum U."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Wolfrum U."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Hofmann K.P."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Hofmann K.P."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Choe H.W."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Choe H.W."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Ernst O.P."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Ernst O.P."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Pulvermuller A."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Pulvermuller A."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Trojan P."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/author"Trojan P."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/date"2004"xsd:gYear
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/date"2004"xsd:gYear
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/name"J. Biol. Chem."xsd:string
http://purl.uniprot.org/citations/15347651http://purl.uniprot.org/core/name"J. Biol. Chem."xsd:string