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Nephrocystin-1 Forms a Complex with Polycystin-1 via a Polyproline Motif/SH3 Domain Interaction and Regulates the Apoptotic Response in Mammals

Mutations in PKD1, the gene encoding for the receptor Polycystin-1 (PC-1), cause autosomal dominant polycystic kidney disease (ADPKD). The cytoplasmic C-terminus of PC-1 contains a coiled-coil domain that mediates an interaction with the PKD2 gene product, Polycystin-2 (PC-2). Here we identify a nov...

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Autores principales: Wodarczyk, Claas, Distefano, Gianfranco, Rowe, Isaline, Gaetani, Massimiliano, Bricoli, Barbara, Muorah, Mordi, Spitaleri, Andrea, Mannella, Valeria, Ricchiuto, Piero, Pema, Monika, Castelli, Maddalena, Casanova, Ariel E., Mollica, Luca, Banzi, Manuela, Boca, Manila, Antignac, Corinne, Saunier, Sophie, Musco, Giovanna, Boletta, Alessandra
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2939065/
https://www.ncbi.nlm.nih.gov/pubmed/20856870
http://dx.doi.org/10.1371/journal.pone.0012719
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author Wodarczyk, Claas
Distefano, Gianfranco
Rowe, Isaline
Gaetani, Massimiliano
Bricoli, Barbara
Muorah, Mordi
Spitaleri, Andrea
Mannella, Valeria
Ricchiuto, Piero
Pema, Monika
Castelli, Maddalena
Casanova, Ariel E.
Mollica, Luca
Banzi, Manuela
Boca, Manila
Antignac, Corinne
Saunier, Sophie
Musco, Giovanna
Boletta, Alessandra
author_facet Wodarczyk, Claas
Distefano, Gianfranco
Rowe, Isaline
Gaetani, Massimiliano
Bricoli, Barbara
Muorah, Mordi
Spitaleri, Andrea
Mannella, Valeria
Ricchiuto, Piero
Pema, Monika
Castelli, Maddalena
Casanova, Ariel E.
Mollica, Luca
Banzi, Manuela
Boca, Manila
Antignac, Corinne
Saunier, Sophie
Musco, Giovanna
Boletta, Alessandra
author_sort Wodarczyk, Claas
collection PubMed
description Mutations in PKD1, the gene encoding for the receptor Polycystin-1 (PC-1), cause autosomal dominant polycystic kidney disease (ADPKD). The cytoplasmic C-terminus of PC-1 contains a coiled-coil domain that mediates an interaction with the PKD2 gene product, Polycystin-2 (PC-2). Here we identify a novel domain in the PC-1 C-terminal tail, a polyproline motif mediating an interaction with Src homology domain 3 (SH3). A screen for interactions using the PC-1 C-terminal tail identified the SH3 domain of nephrocystin-1 (NPHP1) as a potential binding partner of PC-1. NPHP1 is the product of a gene that is mutated in a different form of renal cystic disease, nephronophthisis (NPHP). We show that in vitro pull-down assays and NMR structural studies confirmed the interaction between the PC-1 polyproline motif and the NPHP1 SH3 domain. Furthermore, the two full-length proteins interact through these domains; using a recently generated model system allowing us to track endogenous PC-1, we confirm the interaction between the endogenous proteins. Finally, we show that NPHP1 trafficking to cilia does not require PC-1 and that PC-1 may require NPHP1 to regulate resistance to apoptosis, but not to regulate cell cycle progression. In line with this, we find high levels of apoptosis in renal specimens of NPHP patients. Our data uncover a link between two different ciliopathies, ADPKD and NPHP, supporting the notion that common pathogenetic defects, possibly involving de-regulated apoptosis, underlie renal cyst formation.
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spelling pubmed-29390652010-09-20 Nephrocystin-1 Forms a Complex with Polycystin-1 via a Polyproline Motif/SH3 Domain Interaction and Regulates the Apoptotic Response in Mammals Wodarczyk, Claas Distefano, Gianfranco Rowe, Isaline Gaetani, Massimiliano Bricoli, Barbara Muorah, Mordi Spitaleri, Andrea Mannella, Valeria Ricchiuto, Piero Pema, Monika Castelli, Maddalena Casanova, Ariel E. Mollica, Luca Banzi, Manuela Boca, Manila Antignac, Corinne Saunier, Sophie Musco, Giovanna Boletta, Alessandra PLoS One Research Article Mutations in PKD1, the gene encoding for the receptor Polycystin-1 (PC-1), cause autosomal dominant polycystic kidney disease (ADPKD). The cytoplasmic C-terminus of PC-1 contains a coiled-coil domain that mediates an interaction with the PKD2 gene product, Polycystin-2 (PC-2). Here we identify a novel domain in the PC-1 C-terminal tail, a polyproline motif mediating an interaction with Src homology domain 3 (SH3). A screen for interactions using the PC-1 C-terminal tail identified the SH3 domain of nephrocystin-1 (NPHP1) as a potential binding partner of PC-1. NPHP1 is the product of a gene that is mutated in a different form of renal cystic disease, nephronophthisis (NPHP). We show that in vitro pull-down assays and NMR structural studies confirmed the interaction between the PC-1 polyproline motif and the NPHP1 SH3 domain. Furthermore, the two full-length proteins interact through these domains; using a recently generated model system allowing us to track endogenous PC-1, we confirm the interaction between the endogenous proteins. Finally, we show that NPHP1 trafficking to cilia does not require PC-1 and that PC-1 may require NPHP1 to regulate resistance to apoptosis, but not to regulate cell cycle progression. In line with this, we find high levels of apoptosis in renal specimens of NPHP patients. Our data uncover a link between two different ciliopathies, ADPKD and NPHP, supporting the notion that common pathogenetic defects, possibly involving de-regulated apoptosis, underlie renal cyst formation. Public Library of Science 2010-09-14 /pmc/articles/PMC2939065/ /pubmed/20856870 http://dx.doi.org/10.1371/journal.pone.0012719 Text en Wodarczyk et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Wodarczyk, Claas
Distefano, Gianfranco
Rowe, Isaline
Gaetani, Massimiliano
Bricoli, Barbara
Muorah, Mordi
Spitaleri, Andrea
Mannella, Valeria
Ricchiuto, Piero
Pema, Monika
Castelli, Maddalena
Casanova, Ariel E.
Mollica, Luca
Banzi, Manuela
Boca, Manila
Antignac, Corinne
Saunier, Sophie
Musco, Giovanna
Boletta, Alessandra
Nephrocystin-1 Forms a Complex with Polycystin-1 via a Polyproline Motif/SH3 Domain Interaction and Regulates the Apoptotic Response in Mammals
title Nephrocystin-1 Forms a Complex with Polycystin-1 via a Polyproline Motif/SH3 Domain Interaction and Regulates the Apoptotic Response in Mammals
title_full Nephrocystin-1 Forms a Complex with Polycystin-1 via a Polyproline Motif/SH3 Domain Interaction and Regulates the Apoptotic Response in Mammals
title_fullStr Nephrocystin-1 Forms a Complex with Polycystin-1 via a Polyproline Motif/SH3 Domain Interaction and Regulates the Apoptotic Response in Mammals
title_full_unstemmed Nephrocystin-1 Forms a Complex with Polycystin-1 via a Polyproline Motif/SH3 Domain Interaction and Regulates the Apoptotic Response in Mammals
title_short Nephrocystin-1 Forms a Complex with Polycystin-1 via a Polyproline Motif/SH3 Domain Interaction and Regulates the Apoptotic Response in Mammals
title_sort nephrocystin-1 forms a complex with polycystin-1 via a polyproline motif/sh3 domain interaction and regulates the apoptotic response in mammals
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2939065/
https://www.ncbi.nlm.nih.gov/pubmed/20856870
http://dx.doi.org/10.1371/journal.pone.0012719
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