Cargando…

Fission Yeast Shelterin Regulates DNA Polymerases and Rad3(ATR) Kinase to Limit Telomere Extension

Studies in fission yeast have previously identified evolutionarily conserved shelterin and Stn1-Ten1 complexes, and established Rad3(ATR)/Tel1(ATM)-dependent phosphorylation of the shelterin subunit Ccq1 at Thr93 as the critical post-translational modification for telomerase recruitment to telomeres...

Descripción completa

Detalles Bibliográficos
Autores principales: Chang, Ya-Ting, Moser, Bettina A., Nakamura, Toru M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3820796/
https://www.ncbi.nlm.nih.gov/pubmed/24244195
http://dx.doi.org/10.1371/journal.pgen.1003936
_version_ 1782290204940304384
author Chang, Ya-Ting
Moser, Bettina A.
Nakamura, Toru M.
author_facet Chang, Ya-Ting
Moser, Bettina A.
Nakamura, Toru M.
author_sort Chang, Ya-Ting
collection PubMed
description Studies in fission yeast have previously identified evolutionarily conserved shelterin and Stn1-Ten1 complexes, and established Rad3(ATR)/Tel1(ATM)-dependent phosphorylation of the shelterin subunit Ccq1 at Thr93 as the critical post-translational modification for telomerase recruitment to telomeres. Furthermore, shelterin subunits Poz1, Rap1 and Taz1 have been identified as negative regulators of Thr93 phosphorylation and telomerase recruitment. However, it remained unclear how telomere maintenance is dynamically regulated during the cell cycle. Thus, we investigated how loss of Poz1, Rap1 and Taz1 affects cell cycle regulation of Ccq1 Thr93 phosphorylation and telomere association of telomerase (Trt1(TERT)), DNA polymerases, Replication Protein A (RPA) complex, Rad3(ATR)-Rad26(ATRIP) checkpoint kinase complex, Tel1(ATM) kinase, shelterin subunits (Tpz1, Ccq1 and Poz1) and Stn1. We further investigated how telomere shortening, caused by trt1Δ or catalytically dead Trt1-D743A, affects cell cycle-regulated telomere association of telomerase and DNA polymerases. These analyses established that fission yeast shelterin maintains telomere length homeostasis by coordinating the differential arrival of leading (Polε) and lagging (Polα) strand DNA polymerases at telomeres to modulate Rad3(ATR) association, Ccq1 Thr93 phosphorylation and telomerase recruitment.
format Online
Article
Text
id pubmed-3820796
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-38207962013-11-15 Fission Yeast Shelterin Regulates DNA Polymerases and Rad3(ATR) Kinase to Limit Telomere Extension Chang, Ya-Ting Moser, Bettina A. Nakamura, Toru M. PLoS Genet Research Article Studies in fission yeast have previously identified evolutionarily conserved shelterin and Stn1-Ten1 complexes, and established Rad3(ATR)/Tel1(ATM)-dependent phosphorylation of the shelterin subunit Ccq1 at Thr93 as the critical post-translational modification for telomerase recruitment to telomeres. Furthermore, shelterin subunits Poz1, Rap1 and Taz1 have been identified as negative regulators of Thr93 phosphorylation and telomerase recruitment. However, it remained unclear how telomere maintenance is dynamically regulated during the cell cycle. Thus, we investigated how loss of Poz1, Rap1 and Taz1 affects cell cycle regulation of Ccq1 Thr93 phosphorylation and telomere association of telomerase (Trt1(TERT)), DNA polymerases, Replication Protein A (RPA) complex, Rad3(ATR)-Rad26(ATRIP) checkpoint kinase complex, Tel1(ATM) kinase, shelterin subunits (Tpz1, Ccq1 and Poz1) and Stn1. We further investigated how telomere shortening, caused by trt1Δ or catalytically dead Trt1-D743A, affects cell cycle-regulated telomere association of telomerase and DNA polymerases. These analyses established that fission yeast shelterin maintains telomere length homeostasis by coordinating the differential arrival of leading (Polε) and lagging (Polα) strand DNA polymerases at telomeres to modulate Rad3(ATR) association, Ccq1 Thr93 phosphorylation and telomerase recruitment. Public Library of Science 2013-11-07 /pmc/articles/PMC3820796/ /pubmed/24244195 http://dx.doi.org/10.1371/journal.pgen.1003936 Text en © 2013 Chang 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
Chang, Ya-Ting
Moser, Bettina A.
Nakamura, Toru M.
Fission Yeast Shelterin Regulates DNA Polymerases and Rad3(ATR) Kinase to Limit Telomere Extension
title Fission Yeast Shelterin Regulates DNA Polymerases and Rad3(ATR) Kinase to Limit Telomere Extension
title_full Fission Yeast Shelterin Regulates DNA Polymerases and Rad3(ATR) Kinase to Limit Telomere Extension
title_fullStr Fission Yeast Shelterin Regulates DNA Polymerases and Rad3(ATR) Kinase to Limit Telomere Extension
title_full_unstemmed Fission Yeast Shelterin Regulates DNA Polymerases and Rad3(ATR) Kinase to Limit Telomere Extension
title_short Fission Yeast Shelterin Regulates DNA Polymerases and Rad3(ATR) Kinase to Limit Telomere Extension
title_sort fission yeast shelterin regulates dna polymerases and rad3(atr) kinase to limit telomere extension
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3820796/
https://www.ncbi.nlm.nih.gov/pubmed/24244195
http://dx.doi.org/10.1371/journal.pgen.1003936
work_keys_str_mv AT changyating fissionyeastshelterinregulatesdnapolymerasesandrad3atrkinasetolimittelomereextension
AT moserbettinaa fissionyeastshelterinregulatesdnapolymerasesandrad3atrkinasetolimittelomereextension
AT nakamuratorum fissionyeastshelterinregulatesdnapolymerasesandrad3atrkinasetolimittelomereextension