Cargando…

The Biochemical Role of the Human NEIL1 and NEIL3 DNA Glycosylases on Model DNA Replication Forks

Endonuclease VIII-like (NEIL) 1 and 3 proteins eliminate oxidative DNA base damage and psoralen DNA interstrand crosslinks through initiation of base excision repair. Current evidence points to a DNA replication associated repair function of NEIL1 and NEIL3, correlating with induced expression of th...

Descripción completa

Detalles Bibliográficos
Autores principales: Albelazi, Mustafa S., Martin, Peter R., Mohammed, Soran, Mutti, Luciano, Parsons, Jason L., Elder, Rhoderick H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6523847/
https://www.ncbi.nlm.nih.gov/pubmed/31018584
http://dx.doi.org/10.3390/genes10040315
_version_ 1783419429238865920
author Albelazi, Mustafa S.
Martin, Peter R.
Mohammed, Soran
Mutti, Luciano
Parsons, Jason L.
Elder, Rhoderick H.
author_facet Albelazi, Mustafa S.
Martin, Peter R.
Mohammed, Soran
Mutti, Luciano
Parsons, Jason L.
Elder, Rhoderick H.
author_sort Albelazi, Mustafa S.
collection PubMed
description Endonuclease VIII-like (NEIL) 1 and 3 proteins eliminate oxidative DNA base damage and psoralen DNA interstrand crosslinks through initiation of base excision repair. Current evidence points to a DNA replication associated repair function of NEIL1 and NEIL3, correlating with induced expression of the proteins in S/G2 phases of the cell cycle. However previous attempts to express and purify recombinant human NEIL3 in an active form have been challenging. In this study, both human NEIL1 and NEIL3 have been expressed and purified from E. coli, and the DNA glycosylase activity of these two proteins confirmed using single- and double-stranded DNA oligonucleotide substrates containing the oxidative bases, 5-hydroxyuracil, 8-oxoguanine and thymine glycol. To determine the biochemical role that NEIL1 and NEIL3 play during DNA replication, model replication fork substrates were designed containing the oxidized bases at one of three specific sites relative to the fork. Results indicate that whilst specificity for 5- hydroxyuracil and thymine glycol was observed, NEIL1 acts preferentially on double-stranded DNA, including the damage upstream to the replication fork, whereas NEIL3 preferentially excises oxidized bases from single stranded DNA and within open fork structures. Thus, NEIL1 and NEIL3 act in concert to remove oxidized bases from the replication fork.
format Online
Article
Text
id pubmed-6523847
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-65238472019-06-03 The Biochemical Role of the Human NEIL1 and NEIL3 DNA Glycosylases on Model DNA Replication Forks Albelazi, Mustafa S. Martin, Peter R. Mohammed, Soran Mutti, Luciano Parsons, Jason L. Elder, Rhoderick H. Genes (Basel) Article Endonuclease VIII-like (NEIL) 1 and 3 proteins eliminate oxidative DNA base damage and psoralen DNA interstrand crosslinks through initiation of base excision repair. Current evidence points to a DNA replication associated repair function of NEIL1 and NEIL3, correlating with induced expression of the proteins in S/G2 phases of the cell cycle. However previous attempts to express and purify recombinant human NEIL3 in an active form have been challenging. In this study, both human NEIL1 and NEIL3 have been expressed and purified from E. coli, and the DNA glycosylase activity of these two proteins confirmed using single- and double-stranded DNA oligonucleotide substrates containing the oxidative bases, 5-hydroxyuracil, 8-oxoguanine and thymine glycol. To determine the biochemical role that NEIL1 and NEIL3 play during DNA replication, model replication fork substrates were designed containing the oxidized bases at one of three specific sites relative to the fork. Results indicate that whilst specificity for 5- hydroxyuracil and thymine glycol was observed, NEIL1 acts preferentially on double-stranded DNA, including the damage upstream to the replication fork, whereas NEIL3 preferentially excises oxidized bases from single stranded DNA and within open fork structures. Thus, NEIL1 and NEIL3 act in concert to remove oxidized bases from the replication fork. MDPI 2019-04-23 /pmc/articles/PMC6523847/ /pubmed/31018584 http://dx.doi.org/10.3390/genes10040315 Text en © 2019 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
Albelazi, Mustafa S.
Martin, Peter R.
Mohammed, Soran
Mutti, Luciano
Parsons, Jason L.
Elder, Rhoderick H.
The Biochemical Role of the Human NEIL1 and NEIL3 DNA Glycosylases on Model DNA Replication Forks
title The Biochemical Role of the Human NEIL1 and NEIL3 DNA Glycosylases on Model DNA Replication Forks
title_full The Biochemical Role of the Human NEIL1 and NEIL3 DNA Glycosylases on Model DNA Replication Forks
title_fullStr The Biochemical Role of the Human NEIL1 and NEIL3 DNA Glycosylases on Model DNA Replication Forks
title_full_unstemmed The Biochemical Role of the Human NEIL1 and NEIL3 DNA Glycosylases on Model DNA Replication Forks
title_short The Biochemical Role of the Human NEIL1 and NEIL3 DNA Glycosylases on Model DNA Replication Forks
title_sort biochemical role of the human neil1 and neil3 dna glycosylases on model dna replication forks
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6523847/
https://www.ncbi.nlm.nih.gov/pubmed/31018584
http://dx.doi.org/10.3390/genes10040315
work_keys_str_mv AT albelazimustafas thebiochemicalroleofthehumanneil1andneil3dnaglycosylasesonmodeldnareplicationforks
AT martinpeterr thebiochemicalroleofthehumanneil1andneil3dnaglycosylasesonmodeldnareplicationforks
AT mohammedsoran thebiochemicalroleofthehumanneil1andneil3dnaglycosylasesonmodeldnareplicationforks
AT muttiluciano thebiochemicalroleofthehumanneil1andneil3dnaglycosylasesonmodeldnareplicationforks
AT parsonsjasonl thebiochemicalroleofthehumanneil1andneil3dnaglycosylasesonmodeldnareplicationforks
AT elderrhoderickh thebiochemicalroleofthehumanneil1andneil3dnaglycosylasesonmodeldnareplicationforks
AT albelazimustafas biochemicalroleofthehumanneil1andneil3dnaglycosylasesonmodeldnareplicationforks
AT martinpeterr biochemicalroleofthehumanneil1andneil3dnaglycosylasesonmodeldnareplicationforks
AT mohammedsoran biochemicalroleofthehumanneil1andneil3dnaglycosylasesonmodeldnareplicationforks
AT muttiluciano biochemicalroleofthehumanneil1andneil3dnaglycosylasesonmodeldnareplicationforks
AT parsonsjasonl biochemicalroleofthehumanneil1andneil3dnaglycosylasesonmodeldnareplicationforks
AT elderrhoderickh biochemicalroleofthehumanneil1andneil3dnaglycosylasesonmodeldnareplicationforks