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Physical Interaction between Embryonic Stem Cell-Expressed Ras (ERas) and Arginase-1 in Quiescent Hepatic Stellate Cells

Embryonic stem cell-expressed Ras (ERas) is an atypical constitutively active member of the Ras family and controls distinct signaling pathways, which are critical, for instance, for the maintenance of quiescent hepatic stellate cells (HSCs). Unlike classical Ras paralogs, ERas has a unique N-termin...

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Autores principales: Pudewell, Silke, Lissy, Jana, Nakhaeizadeh, Hossein, Taha, Mohamed S., Akbarzadeh, Mohammad, Rezaei Adariani, Soheila, Nakhaei-Rad, Saeideh, Li, Junjie, Kordes, Claus, Häussinger, Dieter, Piekorz, Roland P., Cortese-Krott, Miriam M., Ahmadian, Mohammad Reza
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8834437/
https://www.ncbi.nlm.nih.gov/pubmed/35159317
http://dx.doi.org/10.3390/cells11030508
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author Pudewell, Silke
Lissy, Jana
Nakhaeizadeh, Hossein
Taha, Mohamed S.
Akbarzadeh, Mohammad
Rezaei Adariani, Soheila
Nakhaei-Rad, Saeideh
Li, Junjie
Kordes, Claus
Häussinger, Dieter
Piekorz, Roland P.
Cortese-Krott, Miriam M.
Ahmadian, Mohammad Reza
author_facet Pudewell, Silke
Lissy, Jana
Nakhaeizadeh, Hossein
Taha, Mohamed S.
Akbarzadeh, Mohammad
Rezaei Adariani, Soheila
Nakhaei-Rad, Saeideh
Li, Junjie
Kordes, Claus
Häussinger, Dieter
Piekorz, Roland P.
Cortese-Krott, Miriam M.
Ahmadian, Mohammad Reza
author_sort Pudewell, Silke
collection PubMed
description Embryonic stem cell-expressed Ras (ERas) is an atypical constitutively active member of the Ras family and controls distinct signaling pathways, which are critical, for instance, for the maintenance of quiescent hepatic stellate cells (HSCs). Unlike classical Ras paralogs, ERas has a unique N-terminal extension (Nex) with as yet unknown function. In this study, we employed affinity pull-down and quantitative liquid chromatography-tandem mass spectrometry (LC–MS/MS) analyses and identified 76 novel binding proteins for human and rat ERas Nex peptides, localized in different subcellular compartments and involved in various cellular processes. One of the identified Nex-binding proteins is the nonmitochondrial, cytosolic arginase 1 (ARG1), a key enzyme of the urea cycle and involved in the de novo synthesis of polyamines, such as spermidine and spermine. Here, we show, for the first time, a high-affinity interaction between ERas Nex and purified ARG1 as well as their subcellular colocalization. The inhibition of ARG1 activity strikingly accelerates the activation of HSCs ex vivo, suggesting a central role of ARG1 activity in the maintenance of HSC quiescence.
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spelling pubmed-88344372022-02-12 Physical Interaction between Embryonic Stem Cell-Expressed Ras (ERas) and Arginase-1 in Quiescent Hepatic Stellate Cells Pudewell, Silke Lissy, Jana Nakhaeizadeh, Hossein Taha, Mohamed S. Akbarzadeh, Mohammad Rezaei Adariani, Soheila Nakhaei-Rad, Saeideh Li, Junjie Kordes, Claus Häussinger, Dieter Piekorz, Roland P. Cortese-Krott, Miriam M. Ahmadian, Mohammad Reza Cells Article Embryonic stem cell-expressed Ras (ERas) is an atypical constitutively active member of the Ras family and controls distinct signaling pathways, which are critical, for instance, for the maintenance of quiescent hepatic stellate cells (HSCs). Unlike classical Ras paralogs, ERas has a unique N-terminal extension (Nex) with as yet unknown function. In this study, we employed affinity pull-down and quantitative liquid chromatography-tandem mass spectrometry (LC–MS/MS) analyses and identified 76 novel binding proteins for human and rat ERas Nex peptides, localized in different subcellular compartments and involved in various cellular processes. One of the identified Nex-binding proteins is the nonmitochondrial, cytosolic arginase 1 (ARG1), a key enzyme of the urea cycle and involved in the de novo synthesis of polyamines, such as spermidine and spermine. Here, we show, for the first time, a high-affinity interaction between ERas Nex and purified ARG1 as well as their subcellular colocalization. The inhibition of ARG1 activity strikingly accelerates the activation of HSCs ex vivo, suggesting a central role of ARG1 activity in the maintenance of HSC quiescence. MDPI 2022-02-01 /pmc/articles/PMC8834437/ /pubmed/35159317 http://dx.doi.org/10.3390/cells11030508 Text en © 2022 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
Pudewell, Silke
Lissy, Jana
Nakhaeizadeh, Hossein
Taha, Mohamed S.
Akbarzadeh, Mohammad
Rezaei Adariani, Soheila
Nakhaei-Rad, Saeideh
Li, Junjie
Kordes, Claus
Häussinger, Dieter
Piekorz, Roland P.
Cortese-Krott, Miriam M.
Ahmadian, Mohammad Reza
Physical Interaction between Embryonic Stem Cell-Expressed Ras (ERas) and Arginase-1 in Quiescent Hepatic Stellate Cells
title Physical Interaction between Embryonic Stem Cell-Expressed Ras (ERas) and Arginase-1 in Quiescent Hepatic Stellate Cells
title_full Physical Interaction between Embryonic Stem Cell-Expressed Ras (ERas) and Arginase-1 in Quiescent Hepatic Stellate Cells
title_fullStr Physical Interaction between Embryonic Stem Cell-Expressed Ras (ERas) and Arginase-1 in Quiescent Hepatic Stellate Cells
title_full_unstemmed Physical Interaction between Embryonic Stem Cell-Expressed Ras (ERas) and Arginase-1 in Quiescent Hepatic Stellate Cells
title_short Physical Interaction between Embryonic Stem Cell-Expressed Ras (ERas) and Arginase-1 in Quiescent Hepatic Stellate Cells
title_sort physical interaction between embryonic stem cell-expressed ras (eras) and arginase-1 in quiescent hepatic stellate cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8834437/
https://www.ncbi.nlm.nih.gov/pubmed/35159317
http://dx.doi.org/10.3390/cells11030508
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