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PDE6D Mediates Trafficking of Prenylated Proteins NIM1K and UBL3 to Primary Cilia

Mutations in PDE6D impair the function of its cognate protein, phosphodiesterase 6D (PDE6D), in prenylated protein trafficking towards the ciliary membrane, causing the human ciliopathy Joubert Syndrome (JBTS22) and retinal degeneration in mice. In this study, we purified the prenylated cargo of PDE...

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Autores principales: Faber, Siebren, Letteboer, Stef J. F., Junger, Katrin, Butcher, Rossano, Tammana, Trinadh V. Satish, van Beersum, Sylvia E. C., Ueffing, Marius, Collin, Rob W. J., Liu, Qin, Boldt, Karsten, Roepman, Ronald
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9857354/
https://www.ncbi.nlm.nih.gov/pubmed/36672247
http://dx.doi.org/10.3390/cells12020312
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author Faber, Siebren
Letteboer, Stef J. F.
Junger, Katrin
Butcher, Rossano
Tammana, Trinadh V. Satish
van Beersum, Sylvia E. C.
Ueffing, Marius
Collin, Rob W. J.
Liu, Qin
Boldt, Karsten
Roepman, Ronald
author_facet Faber, Siebren
Letteboer, Stef J. F.
Junger, Katrin
Butcher, Rossano
Tammana, Trinadh V. Satish
van Beersum, Sylvia E. C.
Ueffing, Marius
Collin, Rob W. J.
Liu, Qin
Boldt, Karsten
Roepman, Ronald
author_sort Faber, Siebren
collection PubMed
description Mutations in PDE6D impair the function of its cognate protein, phosphodiesterase 6D (PDE6D), in prenylated protein trafficking towards the ciliary membrane, causing the human ciliopathy Joubert Syndrome (JBTS22) and retinal degeneration in mice. In this study, we purified the prenylated cargo of PDE6D by affinity proteomics to gain insight into PDE6D-associated disease mechanisms. By this approach, we have identified a specific set of PDE6D-interacting proteins that are involved in photoreceptor integrity, GTPase activity, nuclear import, or ubiquitination. Among these interacting proteins, we identified novel ciliary cargo proteins of PDE6D, including FAM219A, serine/threonine-protein kinase NIM1 (NIM1K), and ubiquitin-like protein 3 (UBL3). We show that NIM1K and UBL3 localize inside the cilium in a prenylation-dependent manner. Furthermore, UBL3 also localizes in vesicle-like structures around the base of the cilium. Through affinity proteomics of UBL3, we confirmed its strong interaction with PDE6D and its association with proteins that regulate small extracellular vesicles (sEVs) and ciliogenesis. Moreover, we show that UBL3 localizes in specific photoreceptor cilium compartments in a prenylation-dependent manner. Therefore, we propose that UBL3 may play a role in the sorting of proteins towards the photoreceptor outer segment, further explaining the development of PDE6D-associated retinal degeneration.
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spelling pubmed-98573542023-01-21 PDE6D Mediates Trafficking of Prenylated Proteins NIM1K and UBL3 to Primary Cilia Faber, Siebren Letteboer, Stef J. F. Junger, Katrin Butcher, Rossano Tammana, Trinadh V. Satish van Beersum, Sylvia E. C. Ueffing, Marius Collin, Rob W. J. Liu, Qin Boldt, Karsten Roepman, Ronald Cells Article Mutations in PDE6D impair the function of its cognate protein, phosphodiesterase 6D (PDE6D), in prenylated protein trafficking towards the ciliary membrane, causing the human ciliopathy Joubert Syndrome (JBTS22) and retinal degeneration in mice. In this study, we purified the prenylated cargo of PDE6D by affinity proteomics to gain insight into PDE6D-associated disease mechanisms. By this approach, we have identified a specific set of PDE6D-interacting proteins that are involved in photoreceptor integrity, GTPase activity, nuclear import, or ubiquitination. Among these interacting proteins, we identified novel ciliary cargo proteins of PDE6D, including FAM219A, serine/threonine-protein kinase NIM1 (NIM1K), and ubiquitin-like protein 3 (UBL3). We show that NIM1K and UBL3 localize inside the cilium in a prenylation-dependent manner. Furthermore, UBL3 also localizes in vesicle-like structures around the base of the cilium. Through affinity proteomics of UBL3, we confirmed its strong interaction with PDE6D and its association with proteins that regulate small extracellular vesicles (sEVs) and ciliogenesis. Moreover, we show that UBL3 localizes in specific photoreceptor cilium compartments in a prenylation-dependent manner. Therefore, we propose that UBL3 may play a role in the sorting of proteins towards the photoreceptor outer segment, further explaining the development of PDE6D-associated retinal degeneration. MDPI 2023-01-13 /pmc/articles/PMC9857354/ /pubmed/36672247 http://dx.doi.org/10.3390/cells12020312 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Faber, Siebren
Letteboer, Stef J. F.
Junger, Katrin
Butcher, Rossano
Tammana, Trinadh V. Satish
van Beersum, Sylvia E. C.
Ueffing, Marius
Collin, Rob W. J.
Liu, Qin
Boldt, Karsten
Roepman, Ronald
PDE6D Mediates Trafficking of Prenylated Proteins NIM1K and UBL3 to Primary Cilia
title PDE6D Mediates Trafficking of Prenylated Proteins NIM1K and UBL3 to Primary Cilia
title_full PDE6D Mediates Trafficking of Prenylated Proteins NIM1K and UBL3 to Primary Cilia
title_fullStr PDE6D Mediates Trafficking of Prenylated Proteins NIM1K and UBL3 to Primary Cilia
title_full_unstemmed PDE6D Mediates Trafficking of Prenylated Proteins NIM1K and UBL3 to Primary Cilia
title_short PDE6D Mediates Trafficking of Prenylated Proteins NIM1K and UBL3 to Primary Cilia
title_sort pde6d mediates trafficking of prenylated proteins nim1k and ubl3 to primary cilia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9857354/
https://www.ncbi.nlm.nih.gov/pubmed/36672247
http://dx.doi.org/10.3390/cells12020312
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