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Human DNA-Damage-Inducible 2 Protein Is Structurally and Functionally Distinct from Its Yeast Ortholog

Although Ddi1-like proteins are conserved among eukaryotes, their biological functions remain poorly characterized. Yeast Ddi1 has been implicated in cell cycle regulation, DNA-damage response, and exocytosis. By virtue of its ubiquitin-like (UBL) and ubiquitin-associated (UBA) domains, it has been...

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Autores principales: Sivá, Monika, Svoboda, Michal, Veverka, Václav, Trempe, Jean-François, Hofmann, Kay, Kožíšek, Milan, Hexnerová, Rozálie, Sedlák, František, Belza, Jan, Brynda, Jiří, Šácha, Pavel, Hubálek, Martin, Starková, Jana, Flaisigová, Iva, Konvalinka, Jan, Šašková, Klára Grantz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4962041/
https://www.ncbi.nlm.nih.gov/pubmed/27461074
http://dx.doi.org/10.1038/srep30443
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author Sivá, Monika
Svoboda, Michal
Veverka, Václav
Trempe, Jean-François
Hofmann, Kay
Kožíšek, Milan
Hexnerová, Rozálie
Sedlák, František
Belza, Jan
Brynda, Jiří
Šácha, Pavel
Hubálek, Martin
Starková, Jana
Flaisigová, Iva
Konvalinka, Jan
Šašková, Klára Grantz
author_facet Sivá, Monika
Svoboda, Michal
Veverka, Václav
Trempe, Jean-François
Hofmann, Kay
Kožíšek, Milan
Hexnerová, Rozálie
Sedlák, František
Belza, Jan
Brynda, Jiří
Šácha, Pavel
Hubálek, Martin
Starková, Jana
Flaisigová, Iva
Konvalinka, Jan
Šašková, Klára Grantz
author_sort Sivá, Monika
collection PubMed
description Although Ddi1-like proteins are conserved among eukaryotes, their biological functions remain poorly characterized. Yeast Ddi1 has been implicated in cell cycle regulation, DNA-damage response, and exocytosis. By virtue of its ubiquitin-like (UBL) and ubiquitin-associated (UBA) domains, it has been proposed to serve as a proteasomal shuttle factor. All Ddi1-like family members also contain a highly conserved retroviral protease-like (RVP) domain with unknown substrate specificity. While the structure and biological function of yeast Ddi1 have been investigated, no such analysis is available for the human homologs. To address this, we solved the 3D structures of the human Ddi2 UBL and RVP domains and identified a new helical domain that extends on either side of the RVP dimer. While Ddi1-like proteins from all vertebrates lack a UBA domain, we identify a novel ubiquitin-interacting motif (UIM) located at the C-terminus of the protein. The UIM showed a weak yet specific affinity towards ubiquitin, as did the Ddi2 UBL domain. However, the full-length Ddi2 protein is unable to bind to di-ubiquitin chains. While proteomic analysis revealed no activity, implying that the protease requires other factors for activation, our structural characterization of all domains of human Ddi2 sets the stage for further characterization.
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spelling pubmed-49620412016-08-08 Human DNA-Damage-Inducible 2 Protein Is Structurally and Functionally Distinct from Its Yeast Ortholog Sivá, Monika Svoboda, Michal Veverka, Václav Trempe, Jean-François Hofmann, Kay Kožíšek, Milan Hexnerová, Rozálie Sedlák, František Belza, Jan Brynda, Jiří Šácha, Pavel Hubálek, Martin Starková, Jana Flaisigová, Iva Konvalinka, Jan Šašková, Klára Grantz Sci Rep Article Although Ddi1-like proteins are conserved among eukaryotes, their biological functions remain poorly characterized. Yeast Ddi1 has been implicated in cell cycle regulation, DNA-damage response, and exocytosis. By virtue of its ubiquitin-like (UBL) and ubiquitin-associated (UBA) domains, it has been proposed to serve as a proteasomal shuttle factor. All Ddi1-like family members also contain a highly conserved retroviral protease-like (RVP) domain with unknown substrate specificity. While the structure and biological function of yeast Ddi1 have been investigated, no such analysis is available for the human homologs. To address this, we solved the 3D structures of the human Ddi2 UBL and RVP domains and identified a new helical domain that extends on either side of the RVP dimer. While Ddi1-like proteins from all vertebrates lack a UBA domain, we identify a novel ubiquitin-interacting motif (UIM) located at the C-terminus of the protein. The UIM showed a weak yet specific affinity towards ubiquitin, as did the Ddi2 UBL domain. However, the full-length Ddi2 protein is unable to bind to di-ubiquitin chains. While proteomic analysis revealed no activity, implying that the protease requires other factors for activation, our structural characterization of all domains of human Ddi2 sets the stage for further characterization. Nature Publishing Group 2016-07-27 /pmc/articles/PMC4962041/ /pubmed/27461074 http://dx.doi.org/10.1038/srep30443 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Sivá, Monika
Svoboda, Michal
Veverka, Václav
Trempe, Jean-François
Hofmann, Kay
Kožíšek, Milan
Hexnerová, Rozálie
Sedlák, František
Belza, Jan
Brynda, Jiří
Šácha, Pavel
Hubálek, Martin
Starková, Jana
Flaisigová, Iva
Konvalinka, Jan
Šašková, Klára Grantz
Human DNA-Damage-Inducible 2 Protein Is Structurally and Functionally Distinct from Its Yeast Ortholog
title Human DNA-Damage-Inducible 2 Protein Is Structurally and Functionally Distinct from Its Yeast Ortholog
title_full Human DNA-Damage-Inducible 2 Protein Is Structurally and Functionally Distinct from Its Yeast Ortholog
title_fullStr Human DNA-Damage-Inducible 2 Protein Is Structurally and Functionally Distinct from Its Yeast Ortholog
title_full_unstemmed Human DNA-Damage-Inducible 2 Protein Is Structurally and Functionally Distinct from Its Yeast Ortholog
title_short Human DNA-Damage-Inducible 2 Protein Is Structurally and Functionally Distinct from Its Yeast Ortholog
title_sort human dna-damage-inducible 2 protein is structurally and functionally distinct from its yeast ortholog
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4962041/
https://www.ncbi.nlm.nih.gov/pubmed/27461074
http://dx.doi.org/10.1038/srep30443
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