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TREX1 degrades the 3′ end of the small DNA oligonucleotide products of nucleotide excision repair in human cells
The nucleotide excision repair (NER) machinery removes UV photoproducts from DNA in the form of small, excised damage-containing DNA oligonucleotides (sedDNAs) ∼30 nt in length. How cells process and degrade these byproducts of DNA repair is not known. Using a small scale RNA interference screen in...
Autores principales: | , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9023299/ https://www.ncbi.nlm.nih.gov/pubmed/35357486 http://dx.doi.org/10.1093/nar/gkac214 |
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author | Kim, Seon Hee Kim, Geun Hoe Kemp, Michael G Choi, Jun-Hyuk |
author_facet | Kim, Seon Hee Kim, Geun Hoe Kemp, Michael G Choi, Jun-Hyuk |
author_sort | Kim, Seon Hee |
collection | PubMed |
description | The nucleotide excision repair (NER) machinery removes UV photoproducts from DNA in the form of small, excised damage-containing DNA oligonucleotides (sedDNAs) ∼30 nt in length. How cells process and degrade these byproducts of DNA repair is not known. Using a small scale RNA interference screen in UV-irradiated human cells, we identified TREX1 as a major regulator of sedDNA abundance. Knockdown of TREX1 increased the level of sedDNAs containing the two major UV photoproducts and their association with the NER proteins TFIIH and RPA. Overexpression of wild-type but not nuclease-inactive TREX1 significantly diminished sedDNA levels, and studies with purified recombinant TREX1 showed that the enzyme efficiently degrades DNA located 3′ of the UV photoproduct in the sedDNA. Knockdown or overexpression of TREX1 did not impact the overall rate of UV photoproduct removal from genomic DNA or cell survival, which indicates that TREX1 function in sedDNA degradation does not impact NER efficiency. Taken together, these results indicate a previously unknown role for TREX1 in promoting the degradation of the sedDNA products of the repair reaction. Because TREX1 mutations and inefficient DNA degradation impact inflammatory and immune signaling pathways, the regulation of sedDNA degradation by TREX1 may contribute to photosensitive skin disorders. |
format | Online Article Text |
id | pubmed-9023299 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-90232992022-04-22 TREX1 degrades the 3′ end of the small DNA oligonucleotide products of nucleotide excision repair in human cells Kim, Seon Hee Kim, Geun Hoe Kemp, Michael G Choi, Jun-Hyuk Nucleic Acids Res Genome Integrity, Repair and Replication The nucleotide excision repair (NER) machinery removes UV photoproducts from DNA in the form of small, excised damage-containing DNA oligonucleotides (sedDNAs) ∼30 nt in length. How cells process and degrade these byproducts of DNA repair is not known. Using a small scale RNA interference screen in UV-irradiated human cells, we identified TREX1 as a major regulator of sedDNA abundance. Knockdown of TREX1 increased the level of sedDNAs containing the two major UV photoproducts and their association with the NER proteins TFIIH and RPA. Overexpression of wild-type but not nuclease-inactive TREX1 significantly diminished sedDNA levels, and studies with purified recombinant TREX1 showed that the enzyme efficiently degrades DNA located 3′ of the UV photoproduct in the sedDNA. Knockdown or overexpression of TREX1 did not impact the overall rate of UV photoproduct removal from genomic DNA or cell survival, which indicates that TREX1 function in sedDNA degradation does not impact NER efficiency. Taken together, these results indicate a previously unknown role for TREX1 in promoting the degradation of the sedDNA products of the repair reaction. Because TREX1 mutations and inefficient DNA degradation impact inflammatory and immune signaling pathways, the regulation of sedDNA degradation by TREX1 may contribute to photosensitive skin disorders. Oxford University Press 2022-03-31 /pmc/articles/PMC9023299/ /pubmed/35357486 http://dx.doi.org/10.1093/nar/gkac214 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Genome Integrity, Repair and Replication Kim, Seon Hee Kim, Geun Hoe Kemp, Michael G Choi, Jun-Hyuk TREX1 degrades the 3′ end of the small DNA oligonucleotide products of nucleotide excision repair in human cells |
title | TREX1 degrades the 3′ end of the small DNA oligonucleotide products of nucleotide excision repair in human cells |
title_full | TREX1 degrades the 3′ end of the small DNA oligonucleotide products of nucleotide excision repair in human cells |
title_fullStr | TREX1 degrades the 3′ end of the small DNA oligonucleotide products of nucleotide excision repair in human cells |
title_full_unstemmed | TREX1 degrades the 3′ end of the small DNA oligonucleotide products of nucleotide excision repair in human cells |
title_short | TREX1 degrades the 3′ end of the small DNA oligonucleotide products of nucleotide excision repair in human cells |
title_sort | trex1 degrades the 3′ end of the small dna oligonucleotide products of nucleotide excision repair in human cells |
topic | Genome Integrity, Repair and Replication |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9023299/ https://www.ncbi.nlm.nih.gov/pubmed/35357486 http://dx.doi.org/10.1093/nar/gkac214 |
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