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Refining the domain architecture model of the replication origin firing factor Treslin/TICRR

Faithful genome duplication requires appropriately controlled replication origin firing. The metazoan origin firing regulation hub Treslin/TICRR and its yeast orthologue Sld3 share the Sld3-Treslin domain and the adjacent TopBP1/Dpb11 interaction domain. We report a revised domain architecture model...

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Autores principales: Ferreira, Pedro, Sanchez-Pulido, Luis, Marko, Anika, Ponting, Chris P, Boos, Dominik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8807876/
https://www.ncbi.nlm.nih.gov/pubmed/35091422
http://dx.doi.org/10.26508/lsa.202101088
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author Ferreira, Pedro
Sanchez-Pulido, Luis
Marko, Anika
Ponting, Chris P
Boos, Dominik
author_facet Ferreira, Pedro
Sanchez-Pulido, Luis
Marko, Anika
Ponting, Chris P
Boos, Dominik
author_sort Ferreira, Pedro
collection PubMed
description Faithful genome duplication requires appropriately controlled replication origin firing. The metazoan origin firing regulation hub Treslin/TICRR and its yeast orthologue Sld3 share the Sld3-Treslin domain and the adjacent TopBP1/Dpb11 interaction domain. We report a revised domain architecture model of Treslin/TICRR. Protein sequence analyses uncovered a conserved Ku70-homologous β-barrel fold in the Treslin/TICRR middle domain (M domain) and in Sld3. Thus, the Sld3-homologous Treslin/TICRR core comprises its three central domains, M domain, Sld3-Treslin domain, and TopBP1/Dpb11 interaction domain, flanked by non-conserved terminal domains, the CIT (conserved in Treslins) and the C terminus. The CIT includes a von Willebrand factor type A domain. Unexpectedly, MTBP, Treslin/TICRR, and Ku70/80 share the same N-terminal domain architecture, von Willebrand factor type A and Ku70-like β-barrels, suggesting a common ancestry. Binding experiments using mutants and the Sld3–Sld7 dimer structure suggest that the Treslin/Sld3 and MTBP/Sld7 β-barrels engage in homotypic interactions, reminiscent of Ku70-Ku80 dimerization. Cells expressing Treslin/TICRR domain mutants indicate that all Sld3-core domains and the non-conserved terminal domains fulfil important functions during origin firing in human cells. Thus, metazoa-specific and widely conserved molecular processes cooperate during metazoan origin firing.
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spelling pubmed-88078762022-02-15 Refining the domain architecture model of the replication origin firing factor Treslin/TICRR Ferreira, Pedro Sanchez-Pulido, Luis Marko, Anika Ponting, Chris P Boos, Dominik Life Sci Alliance Research Articles Faithful genome duplication requires appropriately controlled replication origin firing. The metazoan origin firing regulation hub Treslin/TICRR and its yeast orthologue Sld3 share the Sld3-Treslin domain and the adjacent TopBP1/Dpb11 interaction domain. We report a revised domain architecture model of Treslin/TICRR. Protein sequence analyses uncovered a conserved Ku70-homologous β-barrel fold in the Treslin/TICRR middle domain (M domain) and in Sld3. Thus, the Sld3-homologous Treslin/TICRR core comprises its three central domains, M domain, Sld3-Treslin domain, and TopBP1/Dpb11 interaction domain, flanked by non-conserved terminal domains, the CIT (conserved in Treslins) and the C terminus. The CIT includes a von Willebrand factor type A domain. Unexpectedly, MTBP, Treslin/TICRR, and Ku70/80 share the same N-terminal domain architecture, von Willebrand factor type A and Ku70-like β-barrels, suggesting a common ancestry. Binding experiments using mutants and the Sld3–Sld7 dimer structure suggest that the Treslin/Sld3 and MTBP/Sld7 β-barrels engage in homotypic interactions, reminiscent of Ku70-Ku80 dimerization. Cells expressing Treslin/TICRR domain mutants indicate that all Sld3-core domains and the non-conserved terminal domains fulfil important functions during origin firing in human cells. Thus, metazoa-specific and widely conserved molecular processes cooperate during metazoan origin firing. Life Science Alliance LLC 2022-01-28 /pmc/articles/PMC8807876/ /pubmed/35091422 http://dx.doi.org/10.26508/lsa.202101088 Text en © 2022 Ferreira et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Ferreira, Pedro
Sanchez-Pulido, Luis
Marko, Anika
Ponting, Chris P
Boos, Dominik
Refining the domain architecture model of the replication origin firing factor Treslin/TICRR
title Refining the domain architecture model of the replication origin firing factor Treslin/TICRR
title_full Refining the domain architecture model of the replication origin firing factor Treslin/TICRR
title_fullStr Refining the domain architecture model of the replication origin firing factor Treslin/TICRR
title_full_unstemmed Refining the domain architecture model of the replication origin firing factor Treslin/TICRR
title_short Refining the domain architecture model of the replication origin firing factor Treslin/TICRR
title_sort refining the domain architecture model of the replication origin firing factor treslin/ticrr
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8807876/
https://www.ncbi.nlm.nih.gov/pubmed/35091422
http://dx.doi.org/10.26508/lsa.202101088
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