G protein-coupled receptors (GPCRs) participate in the most common signal transduction system at the plasma membrane. The wide distribution of heterotrimeric G proteins in the internal membranes suggests that a similar signalling mechanism might also be used at intracellular locations. We provide here structural evidence that the protein product of the ocular albinism type 1 gene (OA1), a pigment cell-specific integral membrane glycoprotein, represents a novel member of the GPCR superfamily and demonstrate that it binds heterotrimeric G proteins. Moreover, we show that OA1 is not found at the plasma membrane, being instead targeted to specialized intracellular organelles, the melanosomes. Our data suggest that OA1 represents the first example of an exclusively intracellular GPCR and support the hypothesis that GPCR-mediated signal transduction systems also operate at the internal membranes in mammalian cells.

Ocular Albinism: evidence for a defect in an intracellular signal transduction system / Schiaffino, M. V.; D. ADDIO, M.; Alloni, A.; Baschirotto, C.; Valetti, C.; Cortese, K.; Puri, C.; Bassi, M. T.; Colla, C.; DE LUCA, Michele; Tacchetti, C.; Ballabio, A.. - In: NATURE GENETICS. - ISSN 1061-4036. - STAMPA. - 23:(1999), pp. 108-112.

Ocular Albinism: evidence for a defect in an intracellular signal transduction system.

DE LUCA, Michele;
1999

Abstract

G protein-coupled receptors (GPCRs) participate in the most common signal transduction system at the plasma membrane. The wide distribution of heterotrimeric G proteins in the internal membranes suggests that a similar signalling mechanism might also be used at intracellular locations. We provide here structural evidence that the protein product of the ocular albinism type 1 gene (OA1), a pigment cell-specific integral membrane glycoprotein, represents a novel member of the GPCR superfamily and demonstrate that it binds heterotrimeric G proteins. Moreover, we show that OA1 is not found at the plasma membrane, being instead targeted to specialized intracellular organelles, the melanosomes. Our data suggest that OA1 represents the first example of an exclusively intracellular GPCR and support the hypothesis that GPCR-mediated signal transduction systems also operate at the internal membranes in mammalian cells.
1999
23
108
112
Ocular Albinism: evidence for a defect in an intracellular signal transduction system / Schiaffino, M. V.; D. ADDIO, M.; Alloni, A.; Baschirotto, C.; Valetti, C.; Cortese, K.; Puri, C.; Bassi, M. T.; Colla, C.; DE LUCA, Michele; Tacchetti, C.; Ballabio, A.. - In: NATURE GENETICS. - ISSN 1061-4036. - STAMPA. - 23:(1999), pp. 108-112.
Schiaffino, M. V.; D. ADDIO, M.; Alloni, A.; Baschirotto, C.; Valetti, C.; Cortese, K.; Puri, C.; Bassi, M. T.; Colla, C.; DE LUCA, Michele; Tacchetti, C.; Ballabio, A.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/451153
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