Cargando…

Targeting UBC9-mediated protein hyper-SUMOylation in cystic cholangiocytes halts polycystic liver disease in experimental models

BACKGROUND & AIMS: Polycystic liver diseases (PLDs) are genetic disorders characterized by progressive development of multiple fluid-filled biliary cysts. Most PLD-causative genes participate in protein biogenesis and/or transport. Post-translational modifications (PTMs) are implicated in protei...

Descripción completa

Detalles Bibliográficos
Autores principales: Lee-Law, Pui Y., Olaizola, Paula, Caballero-Camino, Francisco J., Izquierdo-Sanchez, Laura, Rodrigues, Pedro M., Santos-Laso, Alvaro, Azkargorta, Mikel, Elortza, Felix, Martinez-Chanta, Maria L., Perugorria, Maria J., Aspichueta, Patricia, Marzioni, Marco, LaRusso, Nicholas F., Bujanda, Luis, Drenth, Joost P.H., Banales, Jesus M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8157180/
https://www.ncbi.nlm.nih.gov/pubmed/32950589
http://dx.doi.org/10.1016/j.jhep.2020.09.010
_version_ 1783699623661010944
author Lee-Law, Pui Y.
Olaizola, Paula
Caballero-Camino, Francisco J.
Izquierdo-Sanchez, Laura
Rodrigues, Pedro M.
Santos-Laso, Alvaro
Azkargorta, Mikel
Elortza, Felix
Martinez-Chanta, Maria L.
Perugorria, Maria J.
Aspichueta, Patricia
Marzioni, Marco
LaRusso, Nicholas F.
Bujanda, Luis
Drenth, Joost P.H.
Banales, Jesus M.
author_facet Lee-Law, Pui Y.
Olaizola, Paula
Caballero-Camino, Francisco J.
Izquierdo-Sanchez, Laura
Rodrigues, Pedro M.
Santos-Laso, Alvaro
Azkargorta, Mikel
Elortza, Felix
Martinez-Chanta, Maria L.
Perugorria, Maria J.
Aspichueta, Patricia
Marzioni, Marco
LaRusso, Nicholas F.
Bujanda, Luis
Drenth, Joost P.H.
Banales, Jesus M.
author_sort Lee-Law, Pui Y.
collection PubMed
description BACKGROUND & AIMS: Polycystic liver diseases (PLDs) are genetic disorders characterized by progressive development of multiple fluid-filled biliary cysts. Most PLD-causative genes participate in protein biogenesis and/or transport. Post-translational modifications (PTMs) are implicated in protein stability, localization and activity, contributing to human pathobiology; however, their role in PLD is unknown. Herein, we aimed to unveil the role of protein SUMOylation in PLD and its potential therapeutic targeting. METHODS: Levels and functional effects of SUMOylation, along with response to S-adenosylmethionine (SAMe, inhibitor of the SUMOylation enzyme UBC9) and/or short-hairpin RNAs (shRNAs) against UBE2I (UBC9), were evaluated in vitro, in vivo and/or in patients with PLD. SUMOylated proteins were determined by immunoprecipitation and proteomic analyses by mass spectrometry. RESULTS: Most SUMOylation-related genes were found overexpressed (mRNA) in polycystic human and rat liver tissue, as well as in cystic cholangiocytes in culture compared to controls. Increased SUMOylated protein levels were also observed in cystic human cholangiocytes in culture, which decreased after SAMe administration. Chronic treatment of polycystic (PCK: Pkdhl-mut) rats with SAMe halted hepatic cystogenesis and fibrosis, and reduced liver/body weight ratio and liver volume. In vitro, both SAMe and shRNA-mediated UBE2I knockdown increased apoptosis and reduced cell proliferation of cystic cholangiocytes. High-throughput proteomic analysis of SUM01-immunoprecipitated proteins in cystic cholangiocytes identified candidates involved in protein biogenesis, ciliogenesis and proteasome degradation. Accordingly, SAMe hampered proteasome hyperactivity in cystic cholangiocytes, leading to activation of the unfolded protein response and stress-related apoptosis. CONCLUSIONS: Cystic cholangiocytes exhibit increased SUMOylation of proteins involved in cell survival and proliferation, thus promoting hepatic cystogenesis. Inhibition of protein SUMOylation with SAMe halts PLD, representing a novel therapeutic strategy.
format Online
Article
Text
id pubmed-8157180
institution National Center for Biotechnology Information
language English
publishDate 2020
record_format MEDLINE/PubMed
spelling pubmed-81571802021-05-27 Targeting UBC9-mediated protein hyper-SUMOylation in cystic cholangiocytes halts polycystic liver disease in experimental models Lee-Law, Pui Y. Olaizola, Paula Caballero-Camino, Francisco J. Izquierdo-Sanchez, Laura Rodrigues, Pedro M. Santos-Laso, Alvaro Azkargorta, Mikel Elortza, Felix Martinez-Chanta, Maria L. Perugorria, Maria J. Aspichueta, Patricia Marzioni, Marco LaRusso, Nicholas F. Bujanda, Luis Drenth, Joost P.H. Banales, Jesus M. J Hepatol Article BACKGROUND & AIMS: Polycystic liver diseases (PLDs) are genetic disorders characterized by progressive development of multiple fluid-filled biliary cysts. Most PLD-causative genes participate in protein biogenesis and/or transport. Post-translational modifications (PTMs) are implicated in protein stability, localization and activity, contributing to human pathobiology; however, their role in PLD is unknown. Herein, we aimed to unveil the role of protein SUMOylation in PLD and its potential therapeutic targeting. METHODS: Levels and functional effects of SUMOylation, along with response to S-adenosylmethionine (SAMe, inhibitor of the SUMOylation enzyme UBC9) and/or short-hairpin RNAs (shRNAs) against UBE2I (UBC9), were evaluated in vitro, in vivo and/or in patients with PLD. SUMOylated proteins were determined by immunoprecipitation and proteomic analyses by mass spectrometry. RESULTS: Most SUMOylation-related genes were found overexpressed (mRNA) in polycystic human and rat liver tissue, as well as in cystic cholangiocytes in culture compared to controls. Increased SUMOylated protein levels were also observed in cystic human cholangiocytes in culture, which decreased after SAMe administration. Chronic treatment of polycystic (PCK: Pkdhl-mut) rats with SAMe halted hepatic cystogenesis and fibrosis, and reduced liver/body weight ratio and liver volume. In vitro, both SAMe and shRNA-mediated UBE2I knockdown increased apoptosis and reduced cell proliferation of cystic cholangiocytes. High-throughput proteomic analysis of SUM01-immunoprecipitated proteins in cystic cholangiocytes identified candidates involved in protein biogenesis, ciliogenesis and proteasome degradation. Accordingly, SAMe hampered proteasome hyperactivity in cystic cholangiocytes, leading to activation of the unfolded protein response and stress-related apoptosis. CONCLUSIONS: Cystic cholangiocytes exhibit increased SUMOylation of proteins involved in cell survival and proliferation, thus promoting hepatic cystogenesis. Inhibition of protein SUMOylation with SAMe halts PLD, representing a novel therapeutic strategy. 2020-09-17 2021-02 /pmc/articles/PMC8157180/ /pubmed/32950589 http://dx.doi.org/10.1016/j.jhep.2020.09.010 Text en https://creativecommons.org/licenses/by/4.0/@ 2020 European Association for the Study of the Liver. Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license
spellingShingle Article
Lee-Law, Pui Y.
Olaizola, Paula
Caballero-Camino, Francisco J.
Izquierdo-Sanchez, Laura
Rodrigues, Pedro M.
Santos-Laso, Alvaro
Azkargorta, Mikel
Elortza, Felix
Martinez-Chanta, Maria L.
Perugorria, Maria J.
Aspichueta, Patricia
Marzioni, Marco
LaRusso, Nicholas F.
Bujanda, Luis
Drenth, Joost P.H.
Banales, Jesus M.
Targeting UBC9-mediated protein hyper-SUMOylation in cystic cholangiocytes halts polycystic liver disease in experimental models
title Targeting UBC9-mediated protein hyper-SUMOylation in cystic cholangiocytes halts polycystic liver disease in experimental models
title_full Targeting UBC9-mediated protein hyper-SUMOylation in cystic cholangiocytes halts polycystic liver disease in experimental models
title_fullStr Targeting UBC9-mediated protein hyper-SUMOylation in cystic cholangiocytes halts polycystic liver disease in experimental models
title_full_unstemmed Targeting UBC9-mediated protein hyper-SUMOylation in cystic cholangiocytes halts polycystic liver disease in experimental models
title_short Targeting UBC9-mediated protein hyper-SUMOylation in cystic cholangiocytes halts polycystic liver disease in experimental models
title_sort targeting ubc9-mediated protein hyper-sumoylation in cystic cholangiocytes halts polycystic liver disease in experimental models
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8157180/
https://www.ncbi.nlm.nih.gov/pubmed/32950589
http://dx.doi.org/10.1016/j.jhep.2020.09.010
work_keys_str_mv AT leelawpuiy targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT olaizolapaula targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT caballerocaminofranciscoj targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT izquierdosanchezlaura targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT rodriguespedrom targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT santoslasoalvaro targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT azkargortamikel targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT elortzafelix targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT martinezchantamarial targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT perugorriamariaj targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT aspichuetapatricia targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT marzionimarco targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT larussonicholasf targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT bujandaluis targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT drenthjoostph targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels
AT banalesjesusm targetingubc9mediatedproteinhypersumoylationincysticcholangiocyteshaltspolycysticliverdiseaseinexperimentalmodels