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Deoxynucleoside Salvage in Fission Yeast Allows Rescue of Ribonucleotide Reductase Deficiency but Not Spd1-Mediated Inhibition of Replication

In fission yeast, the small, intrinsically disordered protein S-phase delaying protein 1 (Spd1) blocks DNA replication and causes checkpoint activation at least in part, by inhibiting the enzyme ribonucleotide reductase, which is responsible for the synthesis of DNA building blocks. The CRL4(Cdt2) E...

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Autores principales: Fleck, Oliver, Fahnøe, Ulrik, Løvschal, Katrine Vyff, Gasasira, Marie-Fabrice Uwamahoro, Marinova, Irina N., Kragelund, Birthe B., Carr, Antony M., Hartsuiker, Edgar, Holmberg, Christian, Nielsen, Olaf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5448002/
https://www.ncbi.nlm.nih.gov/pubmed/28441348
http://dx.doi.org/10.3390/genes8050128
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author Fleck, Oliver
Fahnøe, Ulrik
Løvschal, Katrine Vyff
Gasasira, Marie-Fabrice Uwamahoro
Marinova, Irina N.
Kragelund, Birthe B.
Carr, Antony M.
Hartsuiker, Edgar
Holmberg, Christian
Nielsen, Olaf
author_facet Fleck, Oliver
Fahnøe, Ulrik
Løvschal, Katrine Vyff
Gasasira, Marie-Fabrice Uwamahoro
Marinova, Irina N.
Kragelund, Birthe B.
Carr, Antony M.
Hartsuiker, Edgar
Holmberg, Christian
Nielsen, Olaf
author_sort Fleck, Oliver
collection PubMed
description In fission yeast, the small, intrinsically disordered protein S-phase delaying protein 1 (Spd1) blocks DNA replication and causes checkpoint activation at least in part, by inhibiting the enzyme ribonucleotide reductase, which is responsible for the synthesis of DNA building blocks. The CRL4(Cdt2) E3 ubiquitin ligase mediates degradation of Spd1 and the related protein Spd2 at S phase of the cell cycle. We have generated a conditional allele of CRL4(Cdt2), by expressing the highly unstable substrate-recruiting protein Cdt2 from a repressible promoter. Unlike Spd1, Spd2 does not regulate deoxynucleotide triphosphate (dNTP) pools; yet we find that Spd1 and Spd2 together inhibit DNA replication upon Cdt2 depletion. To directly test whether this block of replication was solely due to insufficient dNTP levels, we established a deoxy-nucleotide salvage pathway in fission yeast by expressing the human equilibrative nucleoside transporter 1 (hENT1) and the Drosophila deoxynucleoside kinase. We present evidence that this salvage pathway is functional, as 2 µM of deoxynucleosides in the culture medium is able to rescue the growth of two different temperature-sensitive alleles controlling ribonucleotide reductase. However, salvage completely failed to rescue S phase delay, checkpoint activation, and damage sensitivity, which was caused by CRL4(Cdt2) inactivation, suggesting that Spd1—in addition to repressing dNTP synthesis—together with Spd2, can inhibit other replication functions. We propose that this inhibition works at the point of the replication clamp proliferating cell nuclear antigen, a co-factor for DNA replication.
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spelling pubmed-54480022017-05-30 Deoxynucleoside Salvage in Fission Yeast Allows Rescue of Ribonucleotide Reductase Deficiency but Not Spd1-Mediated Inhibition of Replication Fleck, Oliver Fahnøe, Ulrik Løvschal, Katrine Vyff Gasasira, Marie-Fabrice Uwamahoro Marinova, Irina N. Kragelund, Birthe B. Carr, Antony M. Hartsuiker, Edgar Holmberg, Christian Nielsen, Olaf Genes (Basel) Article In fission yeast, the small, intrinsically disordered protein S-phase delaying protein 1 (Spd1) blocks DNA replication and causes checkpoint activation at least in part, by inhibiting the enzyme ribonucleotide reductase, which is responsible for the synthesis of DNA building blocks. The CRL4(Cdt2) E3 ubiquitin ligase mediates degradation of Spd1 and the related protein Spd2 at S phase of the cell cycle. We have generated a conditional allele of CRL4(Cdt2), by expressing the highly unstable substrate-recruiting protein Cdt2 from a repressible promoter. Unlike Spd1, Spd2 does not regulate deoxynucleotide triphosphate (dNTP) pools; yet we find that Spd1 and Spd2 together inhibit DNA replication upon Cdt2 depletion. To directly test whether this block of replication was solely due to insufficient dNTP levels, we established a deoxy-nucleotide salvage pathway in fission yeast by expressing the human equilibrative nucleoside transporter 1 (hENT1) and the Drosophila deoxynucleoside kinase. We present evidence that this salvage pathway is functional, as 2 µM of deoxynucleosides in the culture medium is able to rescue the growth of two different temperature-sensitive alleles controlling ribonucleotide reductase. However, salvage completely failed to rescue S phase delay, checkpoint activation, and damage sensitivity, which was caused by CRL4(Cdt2) inactivation, suggesting that Spd1—in addition to repressing dNTP synthesis—together with Spd2, can inhibit other replication functions. We propose that this inhibition works at the point of the replication clamp proliferating cell nuclear antigen, a co-factor for DNA replication. MDPI 2017-04-25 /pmc/articles/PMC5448002/ /pubmed/28441348 http://dx.doi.org/10.3390/genes8050128 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Fleck, Oliver
Fahnøe, Ulrik
Løvschal, Katrine Vyff
Gasasira, Marie-Fabrice Uwamahoro
Marinova, Irina N.
Kragelund, Birthe B.
Carr, Antony M.
Hartsuiker, Edgar
Holmberg, Christian
Nielsen, Olaf
Deoxynucleoside Salvage in Fission Yeast Allows Rescue of Ribonucleotide Reductase Deficiency but Not Spd1-Mediated Inhibition of Replication
title Deoxynucleoside Salvage in Fission Yeast Allows Rescue of Ribonucleotide Reductase Deficiency but Not Spd1-Mediated Inhibition of Replication
title_full Deoxynucleoside Salvage in Fission Yeast Allows Rescue of Ribonucleotide Reductase Deficiency but Not Spd1-Mediated Inhibition of Replication
title_fullStr Deoxynucleoside Salvage in Fission Yeast Allows Rescue of Ribonucleotide Reductase Deficiency but Not Spd1-Mediated Inhibition of Replication
title_full_unstemmed Deoxynucleoside Salvage in Fission Yeast Allows Rescue of Ribonucleotide Reductase Deficiency but Not Spd1-Mediated Inhibition of Replication
title_short Deoxynucleoside Salvage in Fission Yeast Allows Rescue of Ribonucleotide Reductase Deficiency but Not Spd1-Mediated Inhibition of Replication
title_sort deoxynucleoside salvage in fission yeast allows rescue of ribonucleotide reductase deficiency but not spd1-mediated inhibition of replication
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5448002/
https://www.ncbi.nlm.nih.gov/pubmed/28441348
http://dx.doi.org/10.3390/genes8050128
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