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Both a Unique Motif at the C Terminus and an N-Terminal HEAT Repeat Contribute to G-Quadruplex Binding and Origin Regulation by the Rif1 Protein

Rif1 is a key factor for spatiotemporal regulation of DNA replication. Rif1 suppresses origin firing in the mid-late replication domains by generating replication-suppressive chromatin architecture and by recruiting a protein phosphatase. In fission yeast, the function of Hsk1, a kinase important fo...

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Autores principales: Kobayashi, Shunsuke, Fukatsu, Rino, Kanoh, Yutaka, Kakusho, Naoko, Matsumoto, Seiji, Chaen, Shigeru, Masai, Hisao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6362314/
https://www.ncbi.nlm.nih.gov/pubmed/30510058
http://dx.doi.org/10.1128/MCB.00364-18
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author Kobayashi, Shunsuke
Fukatsu, Rino
Kanoh, Yutaka
Kakusho, Naoko
Matsumoto, Seiji
Chaen, Shigeru
Masai, Hisao
author_facet Kobayashi, Shunsuke
Fukatsu, Rino
Kanoh, Yutaka
Kakusho, Naoko
Matsumoto, Seiji
Chaen, Shigeru
Masai, Hisao
author_sort Kobayashi, Shunsuke
collection PubMed
description Rif1 is a key factor for spatiotemporal regulation of DNA replication. Rif1 suppresses origin firing in the mid-late replication domains by generating replication-suppressive chromatin architecture and by recruiting a protein phosphatase. In fission yeast, the function of Hsk1, a kinase important for origin firing, can be bypassed by rif1Δ due to the loss of origin suppression. Rif1 specifically binds to G-quadruplex (G4) in vitro. Here, we show both conserved N-terminal HEAT repeats and C-terminal nonconserved segments are required for origin suppression. The N-terminal 444 amino acids and the C-terminal 229 amino acids can each mediate specific G4 binding, although high-affinity G4 binding requires the presence of both N- and C-terminal segments. The C-terminal 91 amino acids, although not able to bind to G4, can form a multimer. Furthermore, genetic screening led to identification of two classes of rif1 point mutations that can bypass Hsk1, one that fails to bind to chromatin and one that binds to chromatin. These results illustrate functional domains of Rif1 and indicate importance of both the N-terminal HEAT repeat segment and C-terminal G4 binding/oligomerization domain as well as other functionally unassigned segments of Rif1 in regulation of origin firing.
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spelling pubmed-63623142019-02-22 Both a Unique Motif at the C Terminus and an N-Terminal HEAT Repeat Contribute to G-Quadruplex Binding and Origin Regulation by the Rif1 Protein Kobayashi, Shunsuke Fukatsu, Rino Kanoh, Yutaka Kakusho, Naoko Matsumoto, Seiji Chaen, Shigeru Masai, Hisao Mol Cell Biol Research Article Rif1 is a key factor for spatiotemporal regulation of DNA replication. Rif1 suppresses origin firing in the mid-late replication domains by generating replication-suppressive chromatin architecture and by recruiting a protein phosphatase. In fission yeast, the function of Hsk1, a kinase important for origin firing, can be bypassed by rif1Δ due to the loss of origin suppression. Rif1 specifically binds to G-quadruplex (G4) in vitro. Here, we show both conserved N-terminal HEAT repeats and C-terminal nonconserved segments are required for origin suppression. The N-terminal 444 amino acids and the C-terminal 229 amino acids can each mediate specific G4 binding, although high-affinity G4 binding requires the presence of both N- and C-terminal segments. The C-terminal 91 amino acids, although not able to bind to G4, can form a multimer. Furthermore, genetic screening led to identification of two classes of rif1 point mutations that can bypass Hsk1, one that fails to bind to chromatin and one that binds to chromatin. These results illustrate functional domains of Rif1 and indicate importance of both the N-terminal HEAT repeat segment and C-terminal G4 binding/oligomerization domain as well as other functionally unassigned segments of Rif1 in regulation of origin firing. American Society for Microbiology 2019-02-04 /pmc/articles/PMC6362314/ /pubmed/30510058 http://dx.doi.org/10.1128/MCB.00364-18 Text en Copyright © 2019 Kobayashi et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Kobayashi, Shunsuke
Fukatsu, Rino
Kanoh, Yutaka
Kakusho, Naoko
Matsumoto, Seiji
Chaen, Shigeru
Masai, Hisao
Both a Unique Motif at the C Terminus and an N-Terminal HEAT Repeat Contribute to G-Quadruplex Binding and Origin Regulation by the Rif1 Protein
title Both a Unique Motif at the C Terminus and an N-Terminal HEAT Repeat Contribute to G-Quadruplex Binding and Origin Regulation by the Rif1 Protein
title_full Both a Unique Motif at the C Terminus and an N-Terminal HEAT Repeat Contribute to G-Quadruplex Binding and Origin Regulation by the Rif1 Protein
title_fullStr Both a Unique Motif at the C Terminus and an N-Terminal HEAT Repeat Contribute to G-Quadruplex Binding and Origin Regulation by the Rif1 Protein
title_full_unstemmed Both a Unique Motif at the C Terminus and an N-Terminal HEAT Repeat Contribute to G-Quadruplex Binding and Origin Regulation by the Rif1 Protein
title_short Both a Unique Motif at the C Terminus and an N-Terminal HEAT Repeat Contribute to G-Quadruplex Binding and Origin Regulation by the Rif1 Protein
title_sort both a unique motif at the c terminus and an n-terminal heat repeat contribute to g-quadruplex binding and origin regulation by the rif1 protein
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6362314/
https://www.ncbi.nlm.nih.gov/pubmed/30510058
http://dx.doi.org/10.1128/MCB.00364-18
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