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Primer-Independent DNA Synthesis by a Family B DNA Polymerase from Self-Replicating Mobile Genetic Elements

Family B DNA polymerases (PolBs) play a central role during replication of viral and cellular chromosomes. Here, we report the discovery of a third major group of PolBs, which we denote primer-independent PolB (piPolB), that might be a link between the previously known protein-primed and RNA/DNA-pri...

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Autores principales: Redrejo-Rodríguez, Modesto, Ordóñez, Carlos D., Berjón-Otero, Mónica, Moreno-González, Juan, Aparicio-Maldonado, Cristian, Forterre, Patrick, Salas, Margarita, Krupovic, Mart
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5695915/
https://www.ncbi.nlm.nih.gov/pubmed/29117562
http://dx.doi.org/10.1016/j.celrep.2017.10.039
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author Redrejo-Rodríguez, Modesto
Ordóñez, Carlos D.
Berjón-Otero, Mónica
Moreno-González, Juan
Aparicio-Maldonado, Cristian
Forterre, Patrick
Salas, Margarita
Krupovic, Mart
author_facet Redrejo-Rodríguez, Modesto
Ordóñez, Carlos D.
Berjón-Otero, Mónica
Moreno-González, Juan
Aparicio-Maldonado, Cristian
Forterre, Patrick
Salas, Margarita
Krupovic, Mart
author_sort Redrejo-Rodríguez, Modesto
collection PubMed
description Family B DNA polymerases (PolBs) play a central role during replication of viral and cellular chromosomes. Here, we report the discovery of a third major group of PolBs, which we denote primer-independent PolB (piPolB), that might be a link between the previously known protein-primed and RNA/DNA-primed PolBs. PiPolBs are encoded by highly diverse mobile genetic elements, pipolins, integrated in the genomes of diverse bacteria and also present as circular plasmids in mitochondria. Biochemical characterization showed that piPolB displays efficient DNA polymerization activity that can use undamaged and damaged templates and is endowed with proofreading and strand displacement capacities. Remarkably, the protein is also capable of template-dependent de novo DNA synthesis, i.e., DNA-priming activity, thereby breaking the long-standing dogma that replicative DNA polymerases require a pre-existing primer for DNA synthesis. We suggest that piPolBs are involved in self-replication of pipolins and may also contribute to bacterial DNA damage tolerance.
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spelling pubmed-56959152017-12-04 Primer-Independent DNA Synthesis by a Family B DNA Polymerase from Self-Replicating Mobile Genetic Elements Redrejo-Rodríguez, Modesto Ordóñez, Carlos D. Berjón-Otero, Mónica Moreno-González, Juan Aparicio-Maldonado, Cristian Forterre, Patrick Salas, Margarita Krupovic, Mart Cell Rep Article Family B DNA polymerases (PolBs) play a central role during replication of viral and cellular chromosomes. Here, we report the discovery of a third major group of PolBs, which we denote primer-independent PolB (piPolB), that might be a link between the previously known protein-primed and RNA/DNA-primed PolBs. PiPolBs are encoded by highly diverse mobile genetic elements, pipolins, integrated in the genomes of diverse bacteria and also present as circular plasmids in mitochondria. Biochemical characterization showed that piPolB displays efficient DNA polymerization activity that can use undamaged and damaged templates and is endowed with proofreading and strand displacement capacities. Remarkably, the protein is also capable of template-dependent de novo DNA synthesis, i.e., DNA-priming activity, thereby breaking the long-standing dogma that replicative DNA polymerases require a pre-existing primer for DNA synthesis. We suggest that piPolBs are involved in self-replication of pipolins and may also contribute to bacterial DNA damage tolerance. Cell Press 2017-11-07 /pmc/articles/PMC5695915/ /pubmed/29117562 http://dx.doi.org/10.1016/j.celrep.2017.10.039 Text en © 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Redrejo-Rodríguez, Modesto
Ordóñez, Carlos D.
Berjón-Otero, Mónica
Moreno-González, Juan
Aparicio-Maldonado, Cristian
Forterre, Patrick
Salas, Margarita
Krupovic, Mart
Primer-Independent DNA Synthesis by a Family B DNA Polymerase from Self-Replicating Mobile Genetic Elements
title Primer-Independent DNA Synthesis by a Family B DNA Polymerase from Self-Replicating Mobile Genetic Elements
title_full Primer-Independent DNA Synthesis by a Family B DNA Polymerase from Self-Replicating Mobile Genetic Elements
title_fullStr Primer-Independent DNA Synthesis by a Family B DNA Polymerase from Self-Replicating Mobile Genetic Elements
title_full_unstemmed Primer-Independent DNA Synthesis by a Family B DNA Polymerase from Self-Replicating Mobile Genetic Elements
title_short Primer-Independent DNA Synthesis by a Family B DNA Polymerase from Self-Replicating Mobile Genetic Elements
title_sort primer-independent dna synthesis by a family b dna polymerase from self-replicating mobile genetic elements
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5695915/
https://www.ncbi.nlm.nih.gov/pubmed/29117562
http://dx.doi.org/10.1016/j.celrep.2017.10.039
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