Cargando…

Tracking the processing of damaged DNA double-strand break ends by ligation-mediated PCR: increased persistence of 3′-phosphoglycolate termini in SCAN1 cells

To track the processing of damaged DNA double-strand break (DSB) ends in vivo, a method was devised for quantitative measurement of 3′-phosphoglycolate (PG) termini on DSBs induced by the non-protein chromophore of neocarzinostatin (NCS-C) in the human Alu repeat. Following exposure of cells to NCS-...

Descripción completa

Detalles Bibliográficos
Autores principales: Akopiants, Konstantin, Mohapatra, Susovan, Menon, Vijay, Zhou, Tong, Valerie, Kristoffer, Povirk, Lawrence F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3950721/
https://www.ncbi.nlm.nih.gov/pubmed/24371269
http://dx.doi.org/10.1093/nar/gkt1347
_version_ 1782307040011485184
author Akopiants, Konstantin
Mohapatra, Susovan
Menon, Vijay
Zhou, Tong
Valerie, Kristoffer
Povirk, Lawrence F.
author_facet Akopiants, Konstantin
Mohapatra, Susovan
Menon, Vijay
Zhou, Tong
Valerie, Kristoffer
Povirk, Lawrence F.
author_sort Akopiants, Konstantin
collection PubMed
description To track the processing of damaged DNA double-strand break (DSB) ends in vivo, a method was devised for quantitative measurement of 3′-phosphoglycolate (PG) termini on DSBs induced by the non-protein chromophore of neocarzinostatin (NCS-C) in the human Alu repeat. Following exposure of cells to NCS-C, DNA was isolated, and labile lesions were chemically stabilized. All 3′-phosphate and 3′-hydroxyl ends were enzymatically capped with dideoxy termini, whereas 3′-PG ends were rendered ligatable, linked to an anchor, and quantified by real-time Taqman polymerase chain reaction. Using this assay and variations thereof, 3′-PG and 3′-phosphate termini on 1-base 3′ overhangs of NCS-C-induced DSBs were readily detected in DNA from the treated lymphoblastoid cells, and both were largely eliminated from cellular DNA within 1 h. However, the 3′-PG termini were processed more slowly than 3′-phosphate termini, and were more persistent in tyrosyl-DNA phosphodiesterase 1-mutant SCAN1 than in normal cells, suggesting a significant role for tyrosyl-DNA phosphodiesterase 1 in removing 3′-PG blocking groups for DSB repair. DSBs with 3′-hydroxyl termini, which are not directly induced by NCS-C, were formed rapidly in cells, and largely eliminated by further processing within 1 h, both in Alu repeats and in heterochromatic α-satellite DNA. Moreover, absence of DNA-PK in M059J cells appeared to accelerate resolution of 3′-PG ends.
format Online
Article
Text
id pubmed-3950721
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-39507212014-03-12 Tracking the processing of damaged DNA double-strand break ends by ligation-mediated PCR: increased persistence of 3′-phosphoglycolate termini in SCAN1 cells Akopiants, Konstantin Mohapatra, Susovan Menon, Vijay Zhou, Tong Valerie, Kristoffer Povirk, Lawrence F. Nucleic Acids Res To track the processing of damaged DNA double-strand break (DSB) ends in vivo, a method was devised for quantitative measurement of 3′-phosphoglycolate (PG) termini on DSBs induced by the non-protein chromophore of neocarzinostatin (NCS-C) in the human Alu repeat. Following exposure of cells to NCS-C, DNA was isolated, and labile lesions were chemically stabilized. All 3′-phosphate and 3′-hydroxyl ends were enzymatically capped with dideoxy termini, whereas 3′-PG ends were rendered ligatable, linked to an anchor, and quantified by real-time Taqman polymerase chain reaction. Using this assay and variations thereof, 3′-PG and 3′-phosphate termini on 1-base 3′ overhangs of NCS-C-induced DSBs were readily detected in DNA from the treated lymphoblastoid cells, and both were largely eliminated from cellular DNA within 1 h. However, the 3′-PG termini were processed more slowly than 3′-phosphate termini, and were more persistent in tyrosyl-DNA phosphodiesterase 1-mutant SCAN1 than in normal cells, suggesting a significant role for tyrosyl-DNA phosphodiesterase 1 in removing 3′-PG blocking groups for DSB repair. DSBs with 3′-hydroxyl termini, which are not directly induced by NCS-C, were formed rapidly in cells, and largely eliminated by further processing within 1 h, both in Alu repeats and in heterochromatic α-satellite DNA. Moreover, absence of DNA-PK in M059J cells appeared to accelerate resolution of 3′-PG ends. Oxford University Press 2014-03 2013-12-25 /pmc/articles/PMC3950721/ /pubmed/24371269 http://dx.doi.org/10.1093/nar/gkt1347 Text en © The Author(s) 2013. Published by Oxford University Press. http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Akopiants, Konstantin
Mohapatra, Susovan
Menon, Vijay
Zhou, Tong
Valerie, Kristoffer
Povirk, Lawrence F.
Tracking the processing of damaged DNA double-strand break ends by ligation-mediated PCR: increased persistence of 3′-phosphoglycolate termini in SCAN1 cells
title Tracking the processing of damaged DNA double-strand break ends by ligation-mediated PCR: increased persistence of 3′-phosphoglycolate termini in SCAN1 cells
title_full Tracking the processing of damaged DNA double-strand break ends by ligation-mediated PCR: increased persistence of 3′-phosphoglycolate termini in SCAN1 cells
title_fullStr Tracking the processing of damaged DNA double-strand break ends by ligation-mediated PCR: increased persistence of 3′-phosphoglycolate termini in SCAN1 cells
title_full_unstemmed Tracking the processing of damaged DNA double-strand break ends by ligation-mediated PCR: increased persistence of 3′-phosphoglycolate termini in SCAN1 cells
title_short Tracking the processing of damaged DNA double-strand break ends by ligation-mediated PCR: increased persistence of 3′-phosphoglycolate termini in SCAN1 cells
title_sort tracking the processing of damaged dna double-strand break ends by ligation-mediated pcr: increased persistence of 3′-phosphoglycolate termini in scan1 cells
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3950721/
https://www.ncbi.nlm.nih.gov/pubmed/24371269
http://dx.doi.org/10.1093/nar/gkt1347
work_keys_str_mv AT akopiantskonstantin trackingtheprocessingofdamageddnadoublestrandbreakendsbyligationmediatedpcrincreasedpersistenceof3phosphoglycolateterminiinscan1cells
AT mohapatrasusovan trackingtheprocessingofdamageddnadoublestrandbreakendsbyligationmediatedpcrincreasedpersistenceof3phosphoglycolateterminiinscan1cells
AT menonvijay trackingtheprocessingofdamageddnadoublestrandbreakendsbyligationmediatedpcrincreasedpersistenceof3phosphoglycolateterminiinscan1cells
AT zhoutong trackingtheprocessingofdamageddnadoublestrandbreakendsbyligationmediatedpcrincreasedpersistenceof3phosphoglycolateterminiinscan1cells
AT valeriekristoffer trackingtheprocessingofdamageddnadoublestrandbreakendsbyligationmediatedpcrincreasedpersistenceof3phosphoglycolateterminiinscan1cells
AT povirklawrencef trackingtheprocessingofdamageddnadoublestrandbreakendsbyligationmediatedpcrincreasedpersistenceof3phosphoglycolateterminiinscan1cells