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LncRNA CTBP1-DT-encoded microprotein DDUP sustains DNA damage response signalling to trigger dual DNA repair mechanisms

Sustaining DNA damage response (DDR) signalling via retention of DDR factors at damaged sites is important for transmitting damage-sensing and repair signals. Herein, we found that DNA damage provoked the association of ribosomes with IRES region in lncRNA CTBP1-DT, which overcame the negative effec...

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Autores principales: Yu, Ruyuan, Hu, Yameng, Zhang, Shuxia, Li, Xincheng, Tang, Miaoling, Yang, Meisongzhu, Wu, Xingui, Li, Ziwen, Liao, Xinyi, Xu, Yingru, Li, Man, Chen, Suwen, Qian, Wanying, Gong, Li-Yun, Song, Libing, Li, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9371908/
https://www.ncbi.nlm.nih.gov/pubmed/35849344
http://dx.doi.org/10.1093/nar/gkac611
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author Yu, Ruyuan
Hu, Yameng
Zhang, Shuxia
Li, Xincheng
Tang, Miaoling
Yang, Meisongzhu
Wu, Xingui
Li, Ziwen
Liao, Xinyi
Xu, Yingru
Li, Man
Chen, Suwen
Qian, Wanying
Gong, Li-Yun
Song, Libing
Li, Jun
author_facet Yu, Ruyuan
Hu, Yameng
Zhang, Shuxia
Li, Xincheng
Tang, Miaoling
Yang, Meisongzhu
Wu, Xingui
Li, Ziwen
Liao, Xinyi
Xu, Yingru
Li, Man
Chen, Suwen
Qian, Wanying
Gong, Li-Yun
Song, Libing
Li, Jun
author_sort Yu, Ruyuan
collection PubMed
description Sustaining DNA damage response (DDR) signalling via retention of DDR factors at damaged sites is important for transmitting damage-sensing and repair signals. Herein, we found that DNA damage provoked the association of ribosomes with IRES region in lncRNA CTBP1-DT, which overcame the negative effect of upstream open reading frames (uORFs), and elicited the novel microprotein DNA damage-upregulated protein (DDUP) translation via a cap-independent translation mechanism. Activated ATR kinase-mediated phosphorylation of DDUP induced a drastic ‘dense-to-loose’ conformational change, which sustained the RAD18/RAD51C and RAD18/PCNA complex at damaged sites and initiated RAD51C-mediated homologous recombination and PCNA-mediated post-replication repair mechanisms. Importantly, treatment with ATR inhibitor abolished the effect of DDUP on chromatin retention of RAD51C and PCNA, thereby leading to hypersensitivity of cancer cells to DNA-damaging chemotherapeutics. Taken together, our results uncover a plausible mechanism underlying the DDR sustaining and might represent an attractive therapeutic strategy in improvement of DNA damage-based anticancer therapies.
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spelling pubmed-93719082022-08-12 LncRNA CTBP1-DT-encoded microprotein DDUP sustains DNA damage response signalling to trigger dual DNA repair mechanisms Yu, Ruyuan Hu, Yameng Zhang, Shuxia Li, Xincheng Tang, Miaoling Yang, Meisongzhu Wu, Xingui Li, Ziwen Liao, Xinyi Xu, Yingru Li, Man Chen, Suwen Qian, Wanying Gong, Li-Yun Song, Libing Li, Jun Nucleic Acids Res Molecular Biology Sustaining DNA damage response (DDR) signalling via retention of DDR factors at damaged sites is important for transmitting damage-sensing and repair signals. Herein, we found that DNA damage provoked the association of ribosomes with IRES region in lncRNA CTBP1-DT, which overcame the negative effect of upstream open reading frames (uORFs), and elicited the novel microprotein DNA damage-upregulated protein (DDUP) translation via a cap-independent translation mechanism. Activated ATR kinase-mediated phosphorylation of DDUP induced a drastic ‘dense-to-loose’ conformational change, which sustained the RAD18/RAD51C and RAD18/PCNA complex at damaged sites and initiated RAD51C-mediated homologous recombination and PCNA-mediated post-replication repair mechanisms. Importantly, treatment with ATR inhibitor abolished the effect of DDUP on chromatin retention of RAD51C and PCNA, thereby leading to hypersensitivity of cancer cells to DNA-damaging chemotherapeutics. Taken together, our results uncover a plausible mechanism underlying the DDR sustaining and might represent an attractive therapeutic strategy in improvement of DNA damage-based anticancer therapies. Oxford University Press 2022-07-18 /pmc/articles/PMC9371908/ /pubmed/35849344 http://dx.doi.org/10.1093/nar/gkac611 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Molecular Biology
Yu, Ruyuan
Hu, Yameng
Zhang, Shuxia
Li, Xincheng
Tang, Miaoling
Yang, Meisongzhu
Wu, Xingui
Li, Ziwen
Liao, Xinyi
Xu, Yingru
Li, Man
Chen, Suwen
Qian, Wanying
Gong, Li-Yun
Song, Libing
Li, Jun
LncRNA CTBP1-DT-encoded microprotein DDUP sustains DNA damage response signalling to trigger dual DNA repair mechanisms
title LncRNA CTBP1-DT-encoded microprotein DDUP sustains DNA damage response signalling to trigger dual DNA repair mechanisms
title_full LncRNA CTBP1-DT-encoded microprotein DDUP sustains DNA damage response signalling to trigger dual DNA repair mechanisms
title_fullStr LncRNA CTBP1-DT-encoded microprotein DDUP sustains DNA damage response signalling to trigger dual DNA repair mechanisms
title_full_unstemmed LncRNA CTBP1-DT-encoded microprotein DDUP sustains DNA damage response signalling to trigger dual DNA repair mechanisms
title_short LncRNA CTBP1-DT-encoded microprotein DDUP sustains DNA damage response signalling to trigger dual DNA repair mechanisms
title_sort lncrna ctbp1-dt-encoded microprotein ddup sustains dna damage response signalling to trigger dual dna repair mechanisms
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9371908/
https://www.ncbi.nlm.nih.gov/pubmed/35849344
http://dx.doi.org/10.1093/nar/gkac611
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