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Lysine Acetylation and Succinylation in HeLa Cells and their Essential Roles in Response to UV-induced Stress

Lysine acetylation and succinylation are major types of protein acylation that are important in many cellular processes including gene transcription, cellular metabolism, DNA damage response. Malfunctions in these post-translational modifications are associated with genome instability and disease in...

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Autores principales: Xu, Hong, Chen, Xuanyi, Xu, Xiaoli, Shi, Rongyi, Suo, Shasha, Cheng, Kaiying, Zheng, Zhiguo, Wang, Meixia, Wang, Liangyan, Zhao, Ye, Tian, Bing, Hua, Yuejin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4959001/
https://www.ncbi.nlm.nih.gov/pubmed/27452117
http://dx.doi.org/10.1038/srep30212
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author Xu, Hong
Chen, Xuanyi
Xu, Xiaoli
Shi, Rongyi
Suo, Shasha
Cheng, Kaiying
Zheng, Zhiguo
Wang, Meixia
Wang, Liangyan
Zhao, Ye
Tian, Bing
Hua, Yuejin
author_facet Xu, Hong
Chen, Xuanyi
Xu, Xiaoli
Shi, Rongyi
Suo, Shasha
Cheng, Kaiying
Zheng, Zhiguo
Wang, Meixia
Wang, Liangyan
Zhao, Ye
Tian, Bing
Hua, Yuejin
author_sort Xu, Hong
collection PubMed
description Lysine acetylation and succinylation are major types of protein acylation that are important in many cellular processes including gene transcription, cellular metabolism, DNA damage response. Malfunctions in these post-translational modifications are associated with genome instability and disease in higher organisms. In this study, we used high-resolution nano liquid chromatography-tandem mass spectrometry combined with affinity purification to quantify the dynamic changes of protein acetylation and succinylation in response to ultraviolet (UV)-induced cell stress. A total of 3345 acetylation sites in 1440 proteins and 567 succinylation sites in 246 proteins were identified, many of which have not been reported previously. Bioinformatics analysis revealed that these proteins are involved in many important biological processes, including cell signalling transduction, protein localization and cell metabolism. Crosstalk analysis between these two modifications indicated that modification switches might regulate protein function in response to UV-induced DNA damage. We further illustrated that FEN1 acetylation at different sites could lead to different cellular phenotypes, suggesting the multiple function involvement of FEN1 acetylation under DNA damage stress. These systematic analyses provided valuable resources and new insight into the potential role of lysine acetylation and succinylation under physiological and pathological conditions.
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spelling pubmed-49590012016-08-04 Lysine Acetylation and Succinylation in HeLa Cells and their Essential Roles in Response to UV-induced Stress Xu, Hong Chen, Xuanyi Xu, Xiaoli Shi, Rongyi Suo, Shasha Cheng, Kaiying Zheng, Zhiguo Wang, Meixia Wang, Liangyan Zhao, Ye Tian, Bing Hua, Yuejin Sci Rep Article Lysine acetylation and succinylation are major types of protein acylation that are important in many cellular processes including gene transcription, cellular metabolism, DNA damage response. Malfunctions in these post-translational modifications are associated with genome instability and disease in higher organisms. In this study, we used high-resolution nano liquid chromatography-tandem mass spectrometry combined with affinity purification to quantify the dynamic changes of protein acetylation and succinylation in response to ultraviolet (UV)-induced cell stress. A total of 3345 acetylation sites in 1440 proteins and 567 succinylation sites in 246 proteins were identified, many of which have not been reported previously. Bioinformatics analysis revealed that these proteins are involved in many important biological processes, including cell signalling transduction, protein localization and cell metabolism. Crosstalk analysis between these two modifications indicated that modification switches might regulate protein function in response to UV-induced DNA damage. We further illustrated that FEN1 acetylation at different sites could lead to different cellular phenotypes, suggesting the multiple function involvement of FEN1 acetylation under DNA damage stress. These systematic analyses provided valuable resources and new insight into the potential role of lysine acetylation and succinylation under physiological and pathological conditions. Nature Publishing Group 2016-07-25 /pmc/articles/PMC4959001/ /pubmed/27452117 http://dx.doi.org/10.1038/srep30212 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Xu, Hong
Chen, Xuanyi
Xu, Xiaoli
Shi, Rongyi
Suo, Shasha
Cheng, Kaiying
Zheng, Zhiguo
Wang, Meixia
Wang, Liangyan
Zhao, Ye
Tian, Bing
Hua, Yuejin
Lysine Acetylation and Succinylation in HeLa Cells and their Essential Roles in Response to UV-induced Stress
title Lysine Acetylation and Succinylation in HeLa Cells and their Essential Roles in Response to UV-induced Stress
title_full Lysine Acetylation and Succinylation in HeLa Cells and their Essential Roles in Response to UV-induced Stress
title_fullStr Lysine Acetylation and Succinylation in HeLa Cells and their Essential Roles in Response to UV-induced Stress
title_full_unstemmed Lysine Acetylation and Succinylation in HeLa Cells and their Essential Roles in Response to UV-induced Stress
title_short Lysine Acetylation and Succinylation in HeLa Cells and their Essential Roles in Response to UV-induced Stress
title_sort lysine acetylation and succinylation in hela cells and their essential roles in response to uv-induced stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4959001/
https://www.ncbi.nlm.nih.gov/pubmed/27452117
http://dx.doi.org/10.1038/srep30212
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