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Publication : Ubiquitin chains earmark GPCRs for BBSome-mediated removal from cilia.

First Author  Shinde SR Year  2020
Journal  J Cell Biol Volume  219
Issue  12 PubMed ID  33185668
Mgi Jnum  J:306690 Mgi Id  MGI:6706200
Doi  10.1083/jcb.202003020 Citation  Shinde SR, et al. (2020) Ubiquitin chains earmark GPCRs for BBSome-mediated removal from cilia. J Cell Biol 219(12)
abstractText  Regulated trafficking of G protein-coupled receptors (GPCRs) controls cilium-based signaling pathways. beta-Arrestin, a molecular sensor of activated GPCRs, and the BBSome, a complex of Bardet-Biedl syndrome (BBS) proteins, are required for the signal-dependent exit of ciliary GPCRs, but the functional interplay between beta-arrestin and the BBSome remains elusive. Here we find that, upon activation, ciliary GPCRs become tagged with ubiquitin chains comprising K63 linkages (UbK63) in a beta-arrestin-dependent manner before BBSome-mediated exit. Removal of ubiquitin acceptor residues from the somatostatin receptor 3 (SSTR3) and from the orphan GPCR GPR161 demonstrates that ubiquitination of ciliary GPCRs is required for their regulated exit from cilia. Furthermore, targeting a UbK63-specific deubiquitinase to cilia blocks the exit of GPR161, SSTR3, and Smoothened (SMO) from cilia. Finally, ubiquitinated proteins accumulate in cilia of mammalian photoreceptors and Chlamydomonas cells when BBSome function is compromised. We conclude that Ub chains mark GPCRs and other unwanted ciliary proteins for recognition by the ciliary exit machinery.
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