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The Human Homolog of Escherichia coli Endonuclease V Is a Nucleolar Protein with Affinity for Branched DNA Structures

Loss of amino groups from adenines in DNA results in the formation of hypoxanthine (Hx) bases with miscoding properties. The primary enzyme in Escherichia coli for DNA repair initiation at deaminated adenine is endonuclease V (endoV), encoded by the nfi gene, which cleaves the second phosphodiester...

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Autores principales: Fladeby, Cathrine, Vik, Erik Sebastian, Laerdahl, Jon K., Gran Neurauter, Christine, Heggelund, Julie E., Thorgaard, Eirik, Strøm-Andersen, Pernille, Bjørås, Magnar, Dalhus, Bjørn, Alseth, Ingrun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3489907/
https://www.ncbi.nlm.nih.gov/pubmed/23139746
http://dx.doi.org/10.1371/journal.pone.0047466
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author Fladeby, Cathrine
Vik, Erik Sebastian
Laerdahl, Jon K.
Gran Neurauter, Christine
Heggelund, Julie E.
Thorgaard, Eirik
Strøm-Andersen, Pernille
Bjørås, Magnar
Dalhus, Bjørn
Alseth, Ingrun
author_facet Fladeby, Cathrine
Vik, Erik Sebastian
Laerdahl, Jon K.
Gran Neurauter, Christine
Heggelund, Julie E.
Thorgaard, Eirik
Strøm-Andersen, Pernille
Bjørås, Magnar
Dalhus, Bjørn
Alseth, Ingrun
author_sort Fladeby, Cathrine
collection PubMed
description Loss of amino groups from adenines in DNA results in the formation of hypoxanthine (Hx) bases with miscoding properties. The primary enzyme in Escherichia coli for DNA repair initiation at deaminated adenine is endonuclease V (endoV), encoded by the nfi gene, which cleaves the second phosphodiester bond 3′ of an Hx lesion. Endonuclease V orthologs are widespread in nature and belong to a family of highly conserved proteins. Whereas prokaryotic endoV enzymes are well characterized, the function of the eukaryotic homologs remains obscure. Here we describe the human endoV ortholog and show with bioinformatics and experimental analysis that a large number of transcript variants exist for the human endonuclease V gene (ENDOV), many of which are unlikely to be translated into functional protein. Full-length ENDOV is encoded by 8 evolutionary conserved exons covering the core region of the enzyme, in addition to one or more 3′-exons encoding an unstructured and poorly conserved C-terminus. In contrast to the E. coli enzyme, we find recombinant ENDOV neither to incise nor bind Hx-containing DNA. While both enzymes have strong affinity for several branched DNA substrates, cleavage is observed only with E. coli endoV. We find that ENDOV is localized in the cytoplasm and nucleoli of human cells. As nucleoli harbor the rRNA genes, this may suggest a role for the protein in rRNA gene transactions such as DNA replication or RNA transcription.
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spelling pubmed-34899072012-11-08 The Human Homolog of Escherichia coli Endonuclease V Is a Nucleolar Protein with Affinity for Branched DNA Structures Fladeby, Cathrine Vik, Erik Sebastian Laerdahl, Jon K. Gran Neurauter, Christine Heggelund, Julie E. Thorgaard, Eirik Strøm-Andersen, Pernille Bjørås, Magnar Dalhus, Bjørn Alseth, Ingrun PLoS One Research Article Loss of amino groups from adenines in DNA results in the formation of hypoxanthine (Hx) bases with miscoding properties. The primary enzyme in Escherichia coli for DNA repair initiation at deaminated adenine is endonuclease V (endoV), encoded by the nfi gene, which cleaves the second phosphodiester bond 3′ of an Hx lesion. Endonuclease V orthologs are widespread in nature and belong to a family of highly conserved proteins. Whereas prokaryotic endoV enzymes are well characterized, the function of the eukaryotic homologs remains obscure. Here we describe the human endoV ortholog and show with bioinformatics and experimental analysis that a large number of transcript variants exist for the human endonuclease V gene (ENDOV), many of which are unlikely to be translated into functional protein. Full-length ENDOV is encoded by 8 evolutionary conserved exons covering the core region of the enzyme, in addition to one or more 3′-exons encoding an unstructured and poorly conserved C-terminus. In contrast to the E. coli enzyme, we find recombinant ENDOV neither to incise nor bind Hx-containing DNA. While both enzymes have strong affinity for several branched DNA substrates, cleavage is observed only with E. coli endoV. We find that ENDOV is localized in the cytoplasm and nucleoli of human cells. As nucleoli harbor the rRNA genes, this may suggest a role for the protein in rRNA gene transactions such as DNA replication or RNA transcription. Public Library of Science 2012-11-05 /pmc/articles/PMC3489907/ /pubmed/23139746 http://dx.doi.org/10.1371/journal.pone.0047466 Text en © 2012 Fladeby 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
Fladeby, Cathrine
Vik, Erik Sebastian
Laerdahl, Jon K.
Gran Neurauter, Christine
Heggelund, Julie E.
Thorgaard, Eirik
Strøm-Andersen, Pernille
Bjørås, Magnar
Dalhus, Bjørn
Alseth, Ingrun
The Human Homolog of Escherichia coli Endonuclease V Is a Nucleolar Protein with Affinity for Branched DNA Structures
title The Human Homolog of Escherichia coli Endonuclease V Is a Nucleolar Protein with Affinity for Branched DNA Structures
title_full The Human Homolog of Escherichia coli Endonuclease V Is a Nucleolar Protein with Affinity for Branched DNA Structures
title_fullStr The Human Homolog of Escherichia coli Endonuclease V Is a Nucleolar Protein with Affinity for Branched DNA Structures
title_full_unstemmed The Human Homolog of Escherichia coli Endonuclease V Is a Nucleolar Protein with Affinity for Branched DNA Structures
title_short The Human Homolog of Escherichia coli Endonuclease V Is a Nucleolar Protein with Affinity for Branched DNA Structures
title_sort human homolog of escherichia coli endonuclease v is a nucleolar protein with affinity for branched dna structures
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3489907/
https://www.ncbi.nlm.nih.gov/pubmed/23139746
http://dx.doi.org/10.1371/journal.pone.0047466
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