Ubiquitylation of BBSome is required for ciliary assembly and signaling

Author:

Chiuso Francesco1,delle Donne Rossella1,Giamundo Giuliana23ORCID,Rinaldi Laura1,Borzacchiello Domenica1,Moraca Federica45,Intartaglia Daniela2ORCID,Iannucci Rosa1,Senatore Emanuela1,Lignitto Luca16,Garbi Corrado1ORCID,Conflitti Paolo7ORCID,Catalanotti Bruno4ORCID,Conte Ivan23ORCID,Feliciello Antonio1ORCID

Affiliation:

1. Department of Molecular Medicine and Medical Biotechnology University of Naples “Federico II” Naples Italy

2. Telethon Institute of Genetics and Medicine Pozzuoli Italy

3. Department of Biology University of Naples Federico II Naples Italy

4. Department of Pharmacy University of Naples “Federico II” Naples Italy

5. Net4Science srl University “Magna Graecia” of Catanzaro Catanzaro Italy

6. Cancer Research Center of Marseille (CRCM) CNRS, Aix Marseille Univ, INSERM, Institut Paoli‐Calmettes Marseille France

7. Faculty of Biomedical Sciences, Institute of Computational Science Università della Svizzera Italiana (USI) Lugano Switzerland

Abstract

AbstractBardet‐Biedl syndrome (BBS) is a ciliopathy characterized by retinal degeneration, obesity, renal abnormalities, postaxial polydactyly, and developmental defects. Genes mutated in BBS encode for components and regulators of the BBSome, an octameric complex that controls the trafficking of cargos and receptors within the primary cilium. Although both structure and function of the BBSome have been extensively studied, the impact of ubiquitin signaling on BBSome is largely unknown. We identify the E3 ubiquitin ligase PJA2 as a novel resident of the ciliary compartment and regulator of the BBSome. Upon GPCR‐cAMP stimulation, PJA2 ubiquitylates BBSome subunits. We demonstrate that ubiquitylation of BBS1 at lysine 143 increases the stability of the BBSome and promotes its binding to BBS3, an Arf‐like GTPase protein controlling the targeting of the BBSome to the ciliary membrane. Downregulation of PJA2 or expression of a ubiquitylation‐defective BBS1 mutant (BBS1K143R) affects the trafficking of G‐protein‐coupled receptors (GPCRs) and Shh‐dependent gene transcription. Expression of BBS1K143R in vivo impairs cilium formation, embryonic development, and photoreceptors' morphogenesis, thus recapitulating the BBS phenotype in the medaka fish model.

Funder

Associazione Italiana per la Ricerca sul Cancro

European Regional Development Fund

International Retinal Research Foundation

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,Biochemistry

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