Cargando…
Translesion DNA Synthesis by Human DNA Polymerase η on Templates Containing a Pyrimidopurinone Deoxyguanosine Adduct, 3-(2′-Deoxy-β-d-erythro-pentofuranosyl)pyrimido-[1,2-a]purin-10(3H)-one
[Image: see text] M(1)dG (3-(2′-deoxy-β-d-erythro-pentofuranosyl)pyrimido[1,2-a]purin-10(3H)-one) lesions are mutagenic in bacterial and mammalian cells, leading to base substitutions (mostly M(1)dG to dT and M(1)dG to dA) and frameshift mutations. M(1)dG is produced endogenously through the reactio...
Autores principales: | , , , , , |
---|---|
Formato: | Texto |
Lenguaje: | English |
Publicado: |
American Chemical Society
2008
|
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2651650/ https://www.ncbi.nlm.nih.gov/pubmed/19108641 http://dx.doi.org/10.1021/bi801591a |
_version_ | 1782165173052637184 |
---|---|
author | Stafford, Jennifer B. Eoff, Robert L. Kozekova, Albena Rizzo, Carmelo J. Guengerich, F. Peter Marnett, Lawrence J. |
author_facet | Stafford, Jennifer B. Eoff, Robert L. Kozekova, Albena Rizzo, Carmelo J. Guengerich, F. Peter Marnett, Lawrence J. |
author_sort | Stafford, Jennifer B. |
collection | PubMed |
description | [Image: see text] M(1)dG (3-(2′-deoxy-β-d-erythro-pentofuranosyl)pyrimido[1,2-a]purin-10(3H)-one) lesions are mutagenic in bacterial and mammalian cells, leading to base substitutions (mostly M(1)dG to dT and M(1)dG to dA) and frameshift mutations. M(1)dG is produced endogenously through the reaction of peroxidation products, base propenal or malondialdehyde, with deoxyguanosine residues in DNA. The mutagenicity of M(1)dG in Escherichia coli is dependent on the SOS response, specifically the umuC and umuD gene products, suggesting that mutagenic lesion bypass occurs by the action of translesion DNA polymerases, like DNA polymerase V. Bypass of DNA lesions by translesion DNA polymerases is conserved in bacteria, yeast, and mammalian cells. The ability of recombinant human DNA polymerase η to synthesize DNA across from M(1)dG was studied. M(1)dG partially blocked DNA synthesis by polymerase η. Using steady-state kinetics, we found that insertion of dCTP was the least favored insertion product opposite the M(1)dG lesion (800-fold less efficient than opposite dG). Extension from M(1)dG·dC was equally as efficient as from control primer-templates (dG·dC). dATP insertion opposite M(1)dG was the most favored insertion product (8-fold less efficient than opposite dG), but extension from M(1)dG·dA was 20-fold less efficient than dG·dC. The sequences of full-length human DNA polymerase η bypass products of M(1)dG were determined by LC-ESI/MS/MS. Bypass products contained incorporation of dA (52%) or dC (16%) opposite M(1)dG or −1 frameshifts at the lesion site (31%). Human DNA polymerase η bypass may lead to M(1)dG to dT and frameshift but likely not M(1)dG to dA mutations during DNA replication. |
format | Text |
id | pubmed-2651650 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2008 |
publisher | American Chemical Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-26516502009-03-20 Translesion DNA Synthesis by Human DNA Polymerase η on Templates Containing a Pyrimidopurinone Deoxyguanosine Adduct, 3-(2′-Deoxy-β-d-erythro-pentofuranosyl)pyrimido-[1,2-a]purin-10(3H)-one Stafford, Jennifer B. Eoff, Robert L. Kozekova, Albena Rizzo, Carmelo J. Guengerich, F. Peter Marnett, Lawrence J. Biochemistry [Image: see text] M(1)dG (3-(2′-deoxy-β-d-erythro-pentofuranosyl)pyrimido[1,2-a]purin-10(3H)-one) lesions are mutagenic in bacterial and mammalian cells, leading to base substitutions (mostly M(1)dG to dT and M(1)dG to dA) and frameshift mutations. M(1)dG is produced endogenously through the reaction of peroxidation products, base propenal or malondialdehyde, with deoxyguanosine residues in DNA. The mutagenicity of M(1)dG in Escherichia coli is dependent on the SOS response, specifically the umuC and umuD gene products, suggesting that mutagenic lesion bypass occurs by the action of translesion DNA polymerases, like DNA polymerase V. Bypass of DNA lesions by translesion DNA polymerases is conserved in bacteria, yeast, and mammalian cells. The ability of recombinant human DNA polymerase η to synthesize DNA across from M(1)dG was studied. M(1)dG partially blocked DNA synthesis by polymerase η. Using steady-state kinetics, we found that insertion of dCTP was the least favored insertion product opposite the M(1)dG lesion (800-fold less efficient than opposite dG). Extension from M(1)dG·dC was equally as efficient as from control primer-templates (dG·dC). dATP insertion opposite M(1)dG was the most favored insertion product (8-fold less efficient than opposite dG), but extension from M(1)dG·dA was 20-fold less efficient than dG·dC. The sequences of full-length human DNA polymerase η bypass products of M(1)dG were determined by LC-ESI/MS/MS. Bypass products contained incorporation of dA (52%) or dC (16%) opposite M(1)dG or −1 frameshifts at the lesion site (31%). Human DNA polymerase η bypass may lead to M(1)dG to dT and frameshift but likely not M(1)dG to dA mutations during DNA replication. American Chemical Society 2008-12-24 2009-01-20 /pmc/articles/PMC2651650/ /pubmed/19108641 http://dx.doi.org/10.1021/bi801591a Text en Copyright © 2008 American Chemical Society http://pubs.acs.org This is an open-access article distributed under the ACS AuthorChoice Terms & Conditions. Any use of this article, must conform to the terms of that license which are available at http://pubs.acs.org. 40.75 |
spellingShingle | Stafford, Jennifer B. Eoff, Robert L. Kozekova, Albena Rizzo, Carmelo J. Guengerich, F. Peter Marnett, Lawrence J. Translesion DNA Synthesis by Human DNA Polymerase η on Templates Containing a Pyrimidopurinone Deoxyguanosine Adduct, 3-(2′-Deoxy-β-d-erythro-pentofuranosyl)pyrimido-[1,2-a]purin-10(3H)-one |
title | Translesion DNA Synthesis by Human DNA Polymerase η on Templates Containing a Pyrimidopurinone Deoxyguanosine Adduct, 3-(2′-Deoxy-β-d-erythro-pentofuranosyl)pyrimido-[1,2-a]purin-10(3H)-one |
title_full | Translesion DNA Synthesis by Human DNA Polymerase η on Templates Containing a Pyrimidopurinone Deoxyguanosine Adduct, 3-(2′-Deoxy-β-d-erythro-pentofuranosyl)pyrimido-[1,2-a]purin-10(3H)-one |
title_fullStr | Translesion DNA Synthesis by Human DNA Polymerase η on Templates Containing a Pyrimidopurinone Deoxyguanosine Adduct, 3-(2′-Deoxy-β-d-erythro-pentofuranosyl)pyrimido-[1,2-a]purin-10(3H)-one |
title_full_unstemmed | Translesion DNA Synthesis by Human DNA Polymerase η on Templates Containing a Pyrimidopurinone Deoxyguanosine Adduct, 3-(2′-Deoxy-β-d-erythro-pentofuranosyl)pyrimido-[1,2-a]purin-10(3H)-one |
title_short | Translesion DNA Synthesis by Human DNA Polymerase η on Templates Containing a Pyrimidopurinone Deoxyguanosine Adduct, 3-(2′-Deoxy-β-d-erythro-pentofuranosyl)pyrimido-[1,2-a]purin-10(3H)-one |
title_sort | translesion dna synthesis by human dna polymerase η on templates containing a pyrimidopurinone deoxyguanosine adduct, 3-(2′-deoxy-β-d-erythro-pentofuranosyl)pyrimido-[1,2-a]purin-10(3h)-one |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2651650/ https://www.ncbi.nlm.nih.gov/pubmed/19108641 http://dx.doi.org/10.1021/bi801591a |
work_keys_str_mv | AT staffordjenniferb translesiondnasynthesisbyhumandnapolymeraseēontemplatescontainingapyrimidopurinonedeoxyguanosineadduct32deoxybderythropentofuranosylpyrimido12apurin103hone AT eoffrobertl translesiondnasynthesisbyhumandnapolymeraseēontemplatescontainingapyrimidopurinonedeoxyguanosineadduct32deoxybderythropentofuranosylpyrimido12apurin103hone AT kozekovaalbena translesiondnasynthesisbyhumandnapolymeraseēontemplatescontainingapyrimidopurinonedeoxyguanosineadduct32deoxybderythropentofuranosylpyrimido12apurin103hone AT rizzocarmeloj translesiondnasynthesisbyhumandnapolymeraseēontemplatescontainingapyrimidopurinonedeoxyguanosineadduct32deoxybderythropentofuranosylpyrimido12apurin103hone AT guengerichfpeter translesiondnasynthesisbyhumandnapolymeraseēontemplatescontainingapyrimidopurinonedeoxyguanosineadduct32deoxybderythropentofuranosylpyrimido12apurin103hone AT marnettlawrencej translesiondnasynthesisbyhumandnapolymeraseēontemplatescontainingapyrimidopurinonedeoxyguanosineadduct32deoxybderythropentofuranosylpyrimido12apurin103hone |