TY - JOUR
T1 - Multi-Omics Integration Highlights the Role of Ubiquitination in CCl4-Induced Liver Fibrosis
AU - Mercado-Gómez, Maria
AU - Lopitz-Otsoa, Fernando
AU - Azkargorta, Mikel
AU - Serrano-Maciá, Marina
AU - Lachiondo-Ortega, Sofia
AU - Goikoetxea-Usandizaga, Naroa
AU - Rodríguez-Agudo, Rubén
AU - Fernández-Ramos, David
AU - Bizkarguenaga, Maider
AU - Juan, Virginia Gutiérrez-de
AU - Lectez, Benoît
AU - Aloria, Kerman
AU - Arizmendi, Jesus M.
AU - Simon, Jorge
AU - Alonso, Cristina
AU - Lozano, Juan J.
AU - Avila, Matias A.
AU - Banales, Jesus M.
AU - Marin, Jose J. G.
AU - Beraza, Naiara
AU - Mato, José M.
AU - Elortza, Félix
AU - Barrio, Rosa
AU - Sutherland, James D.
AU - Mayor, Ugo
AU - Martínez-Chantar, María L.
AU - Delgado, Teresa C.
PY - 2020/11/27
Y1 - 2020/11/27
N2 - Liver fibrosis is the excessive accumulation of extracellular matrix proteins that occurs in chronic liver disease. Ubiquitination is a post‐translational modification that is crucial for a plethora of physiological processes. Even though the ubiquitin system has been implicated in several human diseases, the role of ubiquitination in liver fibrosis remains poorly understood. Here, multi‐omics approaches were used to address this. Untargeted metabolomics showed that carbon tetrachloride (CCl4)‐induced liver fibrosis promotes changes in the hepatic metabolome, specifically in glycerophospholipids and sphingolipids. Gene ontology analysis of public deposited gene array-based data and validation in our mouse model showed that the biological process “protein polyubiquitination” is enriched after CCl4‐induced liver fibrosis. Finally, by using transgenic mice expressing biotinylated ubiquitin (
bio Ub mice), the ubiquitinated proteome was isolated and characterized by mass spectrometry in order to unravel the hepatic ubiquitinated proteome fingerprint in CCl4‐induced liver fibrosis. Under these conditions, ubiquitination appears to be involved in the regulation of cell death and survival, cell function, lipid metabolism, and DNA repair. Finally, ubiquitination of proliferating cell nuclear antigen (PCNA) is induced during CCl4‐ induced liver fibrosis and associated with the DNA damage response (DDR). Overall, hepatic ubiquitome profiling can highlight new therapeutic targets for the clinical management of liver fibrosis.
AB - Liver fibrosis is the excessive accumulation of extracellular matrix proteins that occurs in chronic liver disease. Ubiquitination is a post‐translational modification that is crucial for a plethora of physiological processes. Even though the ubiquitin system has been implicated in several human diseases, the role of ubiquitination in liver fibrosis remains poorly understood. Here, multi‐omics approaches were used to address this. Untargeted metabolomics showed that carbon tetrachloride (CCl4)‐induced liver fibrosis promotes changes in the hepatic metabolome, specifically in glycerophospholipids and sphingolipids. Gene ontology analysis of public deposited gene array-based data and validation in our mouse model showed that the biological process “protein polyubiquitination” is enriched after CCl4‐induced liver fibrosis. Finally, by using transgenic mice expressing biotinylated ubiquitin (
bio Ub mice), the ubiquitinated proteome was isolated and characterized by mass spectrometry in order to unravel the hepatic ubiquitinated proteome fingerprint in CCl4‐induced liver fibrosis. Under these conditions, ubiquitination appears to be involved in the regulation of cell death and survival, cell function, lipid metabolism, and DNA repair. Finally, ubiquitination of proliferating cell nuclear antigen (PCNA) is induced during CCl4‐ induced liver fibrosis and associated with the DNA damage response (DDR). Overall, hepatic ubiquitome profiling can highlight new therapeutic targets for the clinical management of liver fibrosis.
KW - DNA damage response (DDR)
KW - Liver fibrosis
KW - Metabolomics
KW - Proliferating cell nuclear antigen (PCNA)
KW - Ubiquitination
UR - https://www.scopus.com/pages/publications/85096680748
U2 - 10.3390/ijms21239043
DO - 10.3390/ijms21239043
M3 - Article
SN - 1661-6596
VL - 21
SP - 1
EP - 19
JO - International Journal of Molecular Sciences
JF - International Journal of Molecular Sciences
IS - 23
M1 - 9043
ER -