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Single cell imaging reveals cisplatin regulating interactions between transcription (co)factors and DNA

Cisplatin is an extremely successful anticancer drug, and is commonly thought to target DNA. However, the way in which cisplatin-induced DNA lesions regulate interactions between transcription factors/cofactors and genomic DNA remains unclear. Herein, we developed a dual-modal microscopy imaging str...

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Autores principales: Lin, Yu, Wu, Kui, Jia, Feifei, Chen, Ling, Wang, Zhaoying, Zhang, Yanyan, Luo, Qun, Liu, Suyan, Qi, Luyu, Li, Nan, Dong, Pu, Gao, Fei, Zheng, Wei, Fang, Xiaohong, Zhao, Yao, Wang, Fuyi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179581/
https://www.ncbi.nlm.nih.gov/pubmed/34163767
http://dx.doi.org/10.1039/d0sc06760a
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author Lin, Yu
Wu, Kui
Jia, Feifei
Chen, Ling
Wang, Zhaoying
Zhang, Yanyan
Luo, Qun
Liu, Suyan
Qi, Luyu
Li, Nan
Dong, Pu
Gao, Fei
Zheng, Wei
Fang, Xiaohong
Zhao, Yao
Wang, Fuyi
author_facet Lin, Yu
Wu, Kui
Jia, Feifei
Chen, Ling
Wang, Zhaoying
Zhang, Yanyan
Luo, Qun
Liu, Suyan
Qi, Luyu
Li, Nan
Dong, Pu
Gao, Fei
Zheng, Wei
Fang, Xiaohong
Zhao, Yao
Wang, Fuyi
author_sort Lin, Yu
collection PubMed
description Cisplatin is an extremely successful anticancer drug, and is commonly thought to target DNA. However, the way in which cisplatin-induced DNA lesions regulate interactions between transcription factors/cofactors and genomic DNA remains unclear. Herein, we developed a dual-modal microscopy imaging strategy to investigate, in situ, the formation of ternary binding complexes of the transcription cofactor HMGB1 and transcription factor Smad3 with cisplatin crosslinked DNA in single cells. We utilized confocal microscopy imaging to map EYFP-fused HMGB1 and fluorescent dye-stained DNA in single cells, followed by the visualization of cisplatin using high spatial resolution (200–350 nm) time of flight secondary ion mass spectrometry (ToF-SIMS) imaging of the same cells. The superposition of the fluorescence and the mass spectrometry (MS) signals indicate the formation of HMGB1-Pt-DNA ternary complexes in the cells. More significantly, for the first time, similar integrated imaging revealed that the cisplatin lesions at Smad-binding elements, for example GGC(GC)/(CG) and AGAC, disrupted the interactions of Smad3 with DNA, which was evidenced by the remarkable reduction in the expression of Smad-specific luciferase reporters subjected to cisplatin treatment. This finding suggests that Smad3 and its related signalling pathway are most likely involved in the intracellular response to cisplatin induced DNA damage.
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spelling pubmed-81795812021-06-22 Single cell imaging reveals cisplatin regulating interactions between transcription (co)factors and DNA Lin, Yu Wu, Kui Jia, Feifei Chen, Ling Wang, Zhaoying Zhang, Yanyan Luo, Qun Liu, Suyan Qi, Luyu Li, Nan Dong, Pu Gao, Fei Zheng, Wei Fang, Xiaohong Zhao, Yao Wang, Fuyi Chem Sci Chemistry Cisplatin is an extremely successful anticancer drug, and is commonly thought to target DNA. However, the way in which cisplatin-induced DNA lesions regulate interactions between transcription factors/cofactors and genomic DNA remains unclear. Herein, we developed a dual-modal microscopy imaging strategy to investigate, in situ, the formation of ternary binding complexes of the transcription cofactor HMGB1 and transcription factor Smad3 with cisplatin crosslinked DNA in single cells. We utilized confocal microscopy imaging to map EYFP-fused HMGB1 and fluorescent dye-stained DNA in single cells, followed by the visualization of cisplatin using high spatial resolution (200–350 nm) time of flight secondary ion mass spectrometry (ToF-SIMS) imaging of the same cells. The superposition of the fluorescence and the mass spectrometry (MS) signals indicate the formation of HMGB1-Pt-DNA ternary complexes in the cells. More significantly, for the first time, similar integrated imaging revealed that the cisplatin lesions at Smad-binding elements, for example GGC(GC)/(CG) and AGAC, disrupted the interactions of Smad3 with DNA, which was evidenced by the remarkable reduction in the expression of Smad-specific luciferase reporters subjected to cisplatin treatment. This finding suggests that Smad3 and its related signalling pathway are most likely involved in the intracellular response to cisplatin induced DNA damage. The Royal Society of Chemistry 2021-02-25 /pmc/articles/PMC8179581/ /pubmed/34163767 http://dx.doi.org/10.1039/d0sc06760a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Lin, Yu
Wu, Kui
Jia, Feifei
Chen, Ling
Wang, Zhaoying
Zhang, Yanyan
Luo, Qun
Liu, Suyan
Qi, Luyu
Li, Nan
Dong, Pu
Gao, Fei
Zheng, Wei
Fang, Xiaohong
Zhao, Yao
Wang, Fuyi
Single cell imaging reveals cisplatin regulating interactions between transcription (co)factors and DNA
title Single cell imaging reveals cisplatin regulating interactions between transcription (co)factors and DNA
title_full Single cell imaging reveals cisplatin regulating interactions between transcription (co)factors and DNA
title_fullStr Single cell imaging reveals cisplatin regulating interactions between transcription (co)factors and DNA
title_full_unstemmed Single cell imaging reveals cisplatin regulating interactions between transcription (co)factors and DNA
title_short Single cell imaging reveals cisplatin regulating interactions between transcription (co)factors and DNA
title_sort single cell imaging reveals cisplatin regulating interactions between transcription (co)factors and dna
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179581/
https://www.ncbi.nlm.nih.gov/pubmed/34163767
http://dx.doi.org/10.1039/d0sc06760a
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