The double-stranded DNA-binding proteins TEBP-1 and TEBP-2 form a telomeric complex with POT-1

Telomeres, tandem repeats at the ends of linear chromosomes, have evolved to deal with the end replication and end protection. Using a proteomics approach, the authors identify TEBP-1 and TEBP-2, two double-stranded binding proteins which together are required for fertility. Despite being paralogs,...

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Autores principales: Sabrina Dietz, Miguel Vasconcelos Almeida, Emily Nischwitz, Jan Schreier, Nikenza Viceconte, Albert Fradera-Sola, Christian Renz, Alejandro Ceron-Noriega, Helle D. Ulrich, Dennis Kappei, René F. Ketting, Falk Butter
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/f83ddf084bc149738d2f2680d08fdb42
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spelling oai:doaj.org-article:f83ddf084bc149738d2f2680d08fdb422021-12-02T15:36:28ZThe double-stranded DNA-binding proteins TEBP-1 and TEBP-2 form a telomeric complex with POT-110.1038/s41467-021-22861-22041-1723https://doaj.org/article/f83ddf084bc149738d2f2680d08fdb422021-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-22861-2https://doaj.org/toc/2041-1723Telomeres, tandem repeats at the ends of linear chromosomes, have evolved to deal with the end replication and end protection. Using a proteomics approach, the authors identify TEBP-1 and TEBP-2, two double-stranded binding proteins which together are required for fertility. Despite being paralogs, they have distinct individual effects on telomere dynamics; TEBP-1 and TEBP-2 are part of a telomeric complex also containing POT-1.Sabrina DietzMiguel Vasconcelos AlmeidaEmily NischwitzJan SchreierNikenza ViceconteAlbert Fradera-SolaChristian RenzAlejandro Ceron-NoriegaHelle D. UlrichDennis KappeiRené F. KettingFalk ButterNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-20 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Sabrina Dietz
Miguel Vasconcelos Almeida
Emily Nischwitz
Jan Schreier
Nikenza Viceconte
Albert Fradera-Sola
Christian Renz
Alejandro Ceron-Noriega
Helle D. Ulrich
Dennis Kappei
René F. Ketting
Falk Butter
The double-stranded DNA-binding proteins TEBP-1 and TEBP-2 form a telomeric complex with POT-1
description Telomeres, tandem repeats at the ends of linear chromosomes, have evolved to deal with the end replication and end protection. Using a proteomics approach, the authors identify TEBP-1 and TEBP-2, two double-stranded binding proteins which together are required for fertility. Despite being paralogs, they have distinct individual effects on telomere dynamics; TEBP-1 and TEBP-2 are part of a telomeric complex also containing POT-1.
format article
author Sabrina Dietz
Miguel Vasconcelos Almeida
Emily Nischwitz
Jan Schreier
Nikenza Viceconte
Albert Fradera-Sola
Christian Renz
Alejandro Ceron-Noriega
Helle D. Ulrich
Dennis Kappei
René F. Ketting
Falk Butter
author_facet Sabrina Dietz
Miguel Vasconcelos Almeida
Emily Nischwitz
Jan Schreier
Nikenza Viceconte
Albert Fradera-Sola
Christian Renz
Alejandro Ceron-Noriega
Helle D. Ulrich
Dennis Kappei
René F. Ketting
Falk Butter
author_sort Sabrina Dietz
title The double-stranded DNA-binding proteins TEBP-1 and TEBP-2 form a telomeric complex with POT-1
title_short The double-stranded DNA-binding proteins TEBP-1 and TEBP-2 form a telomeric complex with POT-1
title_full The double-stranded DNA-binding proteins TEBP-1 and TEBP-2 form a telomeric complex with POT-1
title_fullStr The double-stranded DNA-binding proteins TEBP-1 and TEBP-2 form a telomeric complex with POT-1
title_full_unstemmed The double-stranded DNA-binding proteins TEBP-1 and TEBP-2 form a telomeric complex with POT-1
title_sort double-stranded dna-binding proteins tebp-1 and tebp-2 form a telomeric complex with pot-1
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/f83ddf084bc149738d2f2680d08fdb42
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