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Analysis of the Nse3/MAGE-Binding Domain of the Nse4/EID Family Proteins

BACKGROUND: The Nse1, Nse3 and Nse4 proteins form a tight sub-complex of the large SMC5-6 protein complex. hNSE3/MAGEG1, the mammalian ortholog of Nse3, is the founding member of the MAGE (melanoma-associated antigen) protein family and the Nse4 kleisin subunit is related to the EID (E1A-like inhibi...

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Autores principales: Guerineau, Marc, Kriz, Zdenek, Kozakova, Lucie, Bednarova, Katerina, Janos, Pavel, Palecek, Jan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3335016/
https://www.ncbi.nlm.nih.gov/pubmed/22536443
http://dx.doi.org/10.1371/journal.pone.0035813
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author Guerineau, Marc
Kriz, Zdenek
Kozakova, Lucie
Bednarova, Katerina
Janos, Pavel
Palecek, Jan
author_facet Guerineau, Marc
Kriz, Zdenek
Kozakova, Lucie
Bednarova, Katerina
Janos, Pavel
Palecek, Jan
author_sort Guerineau, Marc
collection PubMed
description BACKGROUND: The Nse1, Nse3 and Nse4 proteins form a tight sub-complex of the large SMC5-6 protein complex. hNSE3/MAGEG1, the mammalian ortholog of Nse3, is the founding member of the MAGE (melanoma-associated antigen) protein family and the Nse4 kleisin subunit is related to the EID (E1A-like inhibitor of differentiation) family of proteins. We have recently shown that human MAGE proteins can interact with NSE4/EID proteins through their characteristic conserved hydrophobic pocket. METHODOLOGY/PRINCIPAL FINDINGS: Using mutagenesis and protein-protein interaction analyses, we have identified a new Nse3/MAGE-binding domain (NMBD) of the Nse4/EID proteins. This short domain is located next to the Nse4 N-terminal kleisin motif and is conserved in all NSE4/EID proteins. The central amino acid residues of the human NSE4b/EID3 domain were essential for its binding to hNSE3/MAGEG1 in yeast two-hybrid assays suggesting they form the core of the binding domain. PEPSCAN ELISA measurements of the MAGEC2 binding affinity to EID2 mutant peptides showed that similar core residues contribute to the EID2-MAGEC2 interaction. In addition, the N-terminal extension of the EID2 binding domain took part in the EID2-MAGEC2 interaction. Finally, docking and molecular dynamic simulations enabled us to generate a structure model for EID2-MAGEC2. Combination of our experimental data and the structure modeling showed how the core helical region of the NSE4/EID domain binds into the conserved pocket characteristic of the MAGE protein family. CONCLUSIONS/SIGNIFICANCE: We have identified a new Nse4/EID conserved domain and characterized its binding to Nse3/MAGE proteins. The conservation and binding of the interacting surfaces suggest tight co-evolution of both Nse4/EID and Nse3/MAGE protein families.
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spelling pubmed-33350162012-04-25 Analysis of the Nse3/MAGE-Binding Domain of the Nse4/EID Family Proteins Guerineau, Marc Kriz, Zdenek Kozakova, Lucie Bednarova, Katerina Janos, Pavel Palecek, Jan PLoS One Research Article BACKGROUND: The Nse1, Nse3 and Nse4 proteins form a tight sub-complex of the large SMC5-6 protein complex. hNSE3/MAGEG1, the mammalian ortholog of Nse3, is the founding member of the MAGE (melanoma-associated antigen) protein family and the Nse4 kleisin subunit is related to the EID (E1A-like inhibitor of differentiation) family of proteins. We have recently shown that human MAGE proteins can interact with NSE4/EID proteins through their characteristic conserved hydrophobic pocket. METHODOLOGY/PRINCIPAL FINDINGS: Using mutagenesis and protein-protein interaction analyses, we have identified a new Nse3/MAGE-binding domain (NMBD) of the Nse4/EID proteins. This short domain is located next to the Nse4 N-terminal kleisin motif and is conserved in all NSE4/EID proteins. The central amino acid residues of the human NSE4b/EID3 domain were essential for its binding to hNSE3/MAGEG1 in yeast two-hybrid assays suggesting they form the core of the binding domain. PEPSCAN ELISA measurements of the MAGEC2 binding affinity to EID2 mutant peptides showed that similar core residues contribute to the EID2-MAGEC2 interaction. In addition, the N-terminal extension of the EID2 binding domain took part in the EID2-MAGEC2 interaction. Finally, docking and molecular dynamic simulations enabled us to generate a structure model for EID2-MAGEC2. Combination of our experimental data and the structure modeling showed how the core helical region of the NSE4/EID domain binds into the conserved pocket characteristic of the MAGE protein family. CONCLUSIONS/SIGNIFICANCE: We have identified a new Nse4/EID conserved domain and characterized its binding to Nse3/MAGE proteins. The conservation and binding of the interacting surfaces suggest tight co-evolution of both Nse4/EID and Nse3/MAGE protein families. Public Library of Science 2012-04-20 /pmc/articles/PMC3335016/ /pubmed/22536443 http://dx.doi.org/10.1371/journal.pone.0035813 Text en Guerineau 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
Guerineau, Marc
Kriz, Zdenek
Kozakova, Lucie
Bednarova, Katerina
Janos, Pavel
Palecek, Jan
Analysis of the Nse3/MAGE-Binding Domain of the Nse4/EID Family Proteins
title Analysis of the Nse3/MAGE-Binding Domain of the Nse4/EID Family Proteins
title_full Analysis of the Nse3/MAGE-Binding Domain of the Nse4/EID Family Proteins
title_fullStr Analysis of the Nse3/MAGE-Binding Domain of the Nse4/EID Family Proteins
title_full_unstemmed Analysis of the Nse3/MAGE-Binding Domain of the Nse4/EID Family Proteins
title_short Analysis of the Nse3/MAGE-Binding Domain of the Nse4/EID Family Proteins
title_sort analysis of the nse3/mage-binding domain of the nse4/eid family proteins
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3335016/
https://www.ncbi.nlm.nih.gov/pubmed/22536443
http://dx.doi.org/10.1371/journal.pone.0035813
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