Cargando…

Modified iPOND revealed the role of mutant p53 in promoting helicase function and telomere maintenance

The G-rich DNA, such as telomere, tends to form G-quadruplex (G4) structure, which slows down the replication fork progression, induces replication stress, and becomes the chromosome fragile sites. Here we described a molecular strategy that cells developed to overcome the DNA replication stress via...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Qianqian, Hou, Kailong, Yang, Jun, Li, Haili, Li, Cui, Zhang, Yanduo, Tian, Jie, Li, Chuanbiao, Guo, Bing, Jia, Shuting, Luo, Ying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10599736/
https://www.ncbi.nlm.nih.gov/pubmed/37827695
http://dx.doi.org/10.18632/aging.205117
_version_ 1785125830056214528
author Wang, Qianqian
Hou, Kailong
Yang, Jun
Li, Haili
Li, Cui
Zhang, Yanduo
Tian, Jie
Li, Chuanbiao
Guo, Bing
Jia, Shuting
Luo, Ying
author_facet Wang, Qianqian
Hou, Kailong
Yang, Jun
Li, Haili
Li, Cui
Zhang, Yanduo
Tian, Jie
Li, Chuanbiao
Guo, Bing
Jia, Shuting
Luo, Ying
author_sort Wang, Qianqian
collection PubMed
description The G-rich DNA, such as telomere, tends to form G-quadruplex (G4) structure, which slows down the replication fork progression, induces replication stress, and becomes the chromosome fragile sites. Here we described a molecular strategy that cells developed to overcome the DNA replication stress via DNA helicase regulation. The p53N236S (p53S) mutation has been found in the Werner syndrome mouse embryo fibroblast (MEFs) escaped from senescence, could be the driving force for cell escaping senescence. We revealed that the p53S could transcriptionally up-regulate DNA helicases expression, including Wrn, Blm, Timeless, Ddx, Mcm, Gins, Fanc, as well as telomere specific proteins Terf1, Pot1, through which p53S promoted the unwinding of G4 structures, and protected the cells from DNA replication stress induced by G4 stabilizer. By modified iPOND (isolation of proteins on nascent DNA) assay and telomere assay, we demonstrated that the p53S could promote the recruitment of those helicases to the DNA replication forks, facilitated the maintenance of telomere, and prevent the telomere dysfunction induced by G4 stabilizer. Interestingly, we did not observe the function of promoting G4 resolving and facilitating telomere lengthening in the cells with Li-Fraumeni Syndrome mutation-p53R172H (p53H), which suggests that this is the specific gain of function for p53S. Together our data suggest that the p53S could gain the new function of releasing the replication stress via regulating the helicase function and G4 structure, which benefits telomere lengthening. This strategy could be applied to the treatment of diseases caused by telomere replication stress.
format Online
Article
Text
id pubmed-10599736
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Impact Journals
record_format MEDLINE/PubMed
spelling pubmed-105997362023-10-26 Modified iPOND revealed the role of mutant p53 in promoting helicase function and telomere maintenance Wang, Qianqian Hou, Kailong Yang, Jun Li, Haili Li, Cui Zhang, Yanduo Tian, Jie Li, Chuanbiao Guo, Bing Jia, Shuting Luo, Ying Aging (Albany NY) Research Paper The G-rich DNA, such as telomere, tends to form G-quadruplex (G4) structure, which slows down the replication fork progression, induces replication stress, and becomes the chromosome fragile sites. Here we described a molecular strategy that cells developed to overcome the DNA replication stress via DNA helicase regulation. The p53N236S (p53S) mutation has been found in the Werner syndrome mouse embryo fibroblast (MEFs) escaped from senescence, could be the driving force for cell escaping senescence. We revealed that the p53S could transcriptionally up-regulate DNA helicases expression, including Wrn, Blm, Timeless, Ddx, Mcm, Gins, Fanc, as well as telomere specific proteins Terf1, Pot1, through which p53S promoted the unwinding of G4 structures, and protected the cells from DNA replication stress induced by G4 stabilizer. By modified iPOND (isolation of proteins on nascent DNA) assay and telomere assay, we demonstrated that the p53S could promote the recruitment of those helicases to the DNA replication forks, facilitated the maintenance of telomere, and prevent the telomere dysfunction induced by G4 stabilizer. Interestingly, we did not observe the function of promoting G4 resolving and facilitating telomere lengthening in the cells with Li-Fraumeni Syndrome mutation-p53R172H (p53H), which suggests that this is the specific gain of function for p53S. Together our data suggest that the p53S could gain the new function of releasing the replication stress via regulating the helicase function and G4 structure, which benefits telomere lengthening. This strategy could be applied to the treatment of diseases caused by telomere replication stress. Impact Journals 2023-10-12 /pmc/articles/PMC10599736/ /pubmed/37827695 http://dx.doi.org/10.18632/aging.205117 Text en Copyright: © 2023 Wang et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Wang, Qianqian
Hou, Kailong
Yang, Jun
Li, Haili
Li, Cui
Zhang, Yanduo
Tian, Jie
Li, Chuanbiao
Guo, Bing
Jia, Shuting
Luo, Ying
Modified iPOND revealed the role of mutant p53 in promoting helicase function and telomere maintenance
title Modified iPOND revealed the role of mutant p53 in promoting helicase function and telomere maintenance
title_full Modified iPOND revealed the role of mutant p53 in promoting helicase function and telomere maintenance
title_fullStr Modified iPOND revealed the role of mutant p53 in promoting helicase function and telomere maintenance
title_full_unstemmed Modified iPOND revealed the role of mutant p53 in promoting helicase function and telomere maintenance
title_short Modified iPOND revealed the role of mutant p53 in promoting helicase function and telomere maintenance
title_sort modified ipond revealed the role of mutant p53 in promoting helicase function and telomere maintenance
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10599736/
https://www.ncbi.nlm.nih.gov/pubmed/37827695
http://dx.doi.org/10.18632/aging.205117
work_keys_str_mv AT wangqianqian modifiedipondrevealedtheroleofmutantp53inpromotinghelicasefunctionandtelomeremaintenance
AT houkailong modifiedipondrevealedtheroleofmutantp53inpromotinghelicasefunctionandtelomeremaintenance
AT yangjun modifiedipondrevealedtheroleofmutantp53inpromotinghelicasefunctionandtelomeremaintenance
AT lihaili modifiedipondrevealedtheroleofmutantp53inpromotinghelicasefunctionandtelomeremaintenance
AT licui modifiedipondrevealedtheroleofmutantp53inpromotinghelicasefunctionandtelomeremaintenance
AT zhangyanduo modifiedipondrevealedtheroleofmutantp53inpromotinghelicasefunctionandtelomeremaintenance
AT tianjie modifiedipondrevealedtheroleofmutantp53inpromotinghelicasefunctionandtelomeremaintenance
AT lichuanbiao modifiedipondrevealedtheroleofmutantp53inpromotinghelicasefunctionandtelomeremaintenance
AT guobing modifiedipondrevealedtheroleofmutantp53inpromotinghelicasefunctionandtelomeremaintenance
AT jiashuting modifiedipondrevealedtheroleofmutantp53inpromotinghelicasefunctionandtelomeremaintenance
AT luoying modifiedipondrevealedtheroleofmutantp53inpromotinghelicasefunctionandtelomeremaintenance