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CBP mediated DOT1L acetylation confers DOT1L stability and promotes cancer metastasis

Background and Aim: DOT1L regulates various genes involved in cancer onset and progression by catalyzing H3K79 methylation, but how DOT1L activity itself is regulated is unclear. Here, we aimed to identify specific DOT1L post-translational modifications that might regulate DOT1L activity and thus im...

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Autores principales: Liu, Chaohua, Yang, Qiaoyan, Zhu, Qian, Lu, Xiaopeng, Li, Meiting, Hou, Tianyun, Li, Zhiming, Tang, Ming, Li, Yinglu, Wang, Hui, Yang, Yang, Wang, Haiying, Zhao, Ying, Wen, He, Liu, Xiangyu, Mao, Zebin, Zhu, Wei-Guo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6993218/
https://www.ncbi.nlm.nih.gov/pubmed/32042335
http://dx.doi.org/10.7150/thno.39013
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author Liu, Chaohua
Yang, Qiaoyan
Zhu, Qian
Lu, Xiaopeng
Li, Meiting
Hou, Tianyun
Li, Zhiming
Tang, Ming
Li, Yinglu
Wang, Hui
Yang, Yang
Wang, Haiying
Zhao, Ying
Wen, He
Liu, Xiangyu
Mao, Zebin
Zhu, Wei-Guo
author_facet Liu, Chaohua
Yang, Qiaoyan
Zhu, Qian
Lu, Xiaopeng
Li, Meiting
Hou, Tianyun
Li, Zhiming
Tang, Ming
Li, Yinglu
Wang, Hui
Yang, Yang
Wang, Haiying
Zhao, Ying
Wen, He
Liu, Xiangyu
Mao, Zebin
Zhu, Wei-Guo
author_sort Liu, Chaohua
collection PubMed
description Background and Aim: DOT1L regulates various genes involved in cancer onset and progression by catalyzing H3K79 methylation, but how DOT1L activity itself is regulated is unclear. Here, we aimed to identify specific DOT1L post-translational modifications that might regulate DOT1L activity and thus impact on colorectal cancer (CRC) progression. Methods: We conducted affinity purification and mass spectrometry to explore DOT1L post-translational modifications. We then established transwell migration and invasion assays to specifically investigate the role of DOT1L(K358) acetylation on CRC cellular behavior in vitro and a bioluminescence imaging approach to determine the role of DOT1L(K358) acetylation in CRC metastasis in vivo. We performed chromatin immunoprecipitation to identify DOT1L acetylation-controlled target genes. Finally, we used immunohistochemical staining of human tissue arrays to examine the relevance of DOT1L(K358) acetylation in CRC progression and metastasis and the correlation between DOT1L acetylation and CBP. Results: We found that CBP mediates DOT1L K358 acetylation in human colon cancer cells and positively correlates with CRC stages. Mechanistically, DOT1L acetylation confers DOT1L stability by preventing the binding of RNF8 to DOT1L and subsequent proteasomal degradation, but does not affect its enzyme activity. Once stabilized, DOT1L can catalyze the H3K79 methylation of genes involved in epithelial-mesenchymal transition, including SNAIL and ZEB1. An acetylation mimic DOT1L mutant (Q358) could induce a cancer-like phenotype in vitro, characterized by metastasis and invasion. Finally, DOT1L(K358) acetylation correlated with CRC progression and a poor survival rate as well as with high CBP expression. Conclusions: DOT1L acetylation by CBP drives CRC progression and metastasis. Targeting DOT1L deacetylation signaling is a potential therapeutic strategy for DOT1L-driven cancers.
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spelling pubmed-69932182020-02-10 CBP mediated DOT1L acetylation confers DOT1L stability and promotes cancer metastasis Liu, Chaohua Yang, Qiaoyan Zhu, Qian Lu, Xiaopeng Li, Meiting Hou, Tianyun Li, Zhiming Tang, Ming Li, Yinglu Wang, Hui Yang, Yang Wang, Haiying Zhao, Ying Wen, He Liu, Xiangyu Mao, Zebin Zhu, Wei-Guo Theranostics Research Paper Background and Aim: DOT1L regulates various genes involved in cancer onset and progression by catalyzing H3K79 methylation, but how DOT1L activity itself is regulated is unclear. Here, we aimed to identify specific DOT1L post-translational modifications that might regulate DOT1L activity and thus impact on colorectal cancer (CRC) progression. Methods: We conducted affinity purification and mass spectrometry to explore DOT1L post-translational modifications. We then established transwell migration and invasion assays to specifically investigate the role of DOT1L(K358) acetylation on CRC cellular behavior in vitro and a bioluminescence imaging approach to determine the role of DOT1L(K358) acetylation in CRC metastasis in vivo. We performed chromatin immunoprecipitation to identify DOT1L acetylation-controlled target genes. Finally, we used immunohistochemical staining of human tissue arrays to examine the relevance of DOT1L(K358) acetylation in CRC progression and metastasis and the correlation between DOT1L acetylation and CBP. Results: We found that CBP mediates DOT1L K358 acetylation in human colon cancer cells and positively correlates with CRC stages. Mechanistically, DOT1L acetylation confers DOT1L stability by preventing the binding of RNF8 to DOT1L and subsequent proteasomal degradation, but does not affect its enzyme activity. Once stabilized, DOT1L can catalyze the H3K79 methylation of genes involved in epithelial-mesenchymal transition, including SNAIL and ZEB1. An acetylation mimic DOT1L mutant (Q358) could induce a cancer-like phenotype in vitro, characterized by metastasis and invasion. Finally, DOT1L(K358) acetylation correlated with CRC progression and a poor survival rate as well as with high CBP expression. Conclusions: DOT1L acetylation by CBP drives CRC progression and metastasis. Targeting DOT1L deacetylation signaling is a potential therapeutic strategy for DOT1L-driven cancers. Ivyspring International Publisher 2020-01-01 /pmc/articles/PMC6993218/ /pubmed/32042335 http://dx.doi.org/10.7150/thno.39013 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Liu, Chaohua
Yang, Qiaoyan
Zhu, Qian
Lu, Xiaopeng
Li, Meiting
Hou, Tianyun
Li, Zhiming
Tang, Ming
Li, Yinglu
Wang, Hui
Yang, Yang
Wang, Haiying
Zhao, Ying
Wen, He
Liu, Xiangyu
Mao, Zebin
Zhu, Wei-Guo
CBP mediated DOT1L acetylation confers DOT1L stability and promotes cancer metastasis
title CBP mediated DOT1L acetylation confers DOT1L stability and promotes cancer metastasis
title_full CBP mediated DOT1L acetylation confers DOT1L stability and promotes cancer metastasis
title_fullStr CBP mediated DOT1L acetylation confers DOT1L stability and promotes cancer metastasis
title_full_unstemmed CBP mediated DOT1L acetylation confers DOT1L stability and promotes cancer metastasis
title_short CBP mediated DOT1L acetylation confers DOT1L stability and promotes cancer metastasis
title_sort cbp mediated dot1l acetylation confers dot1l stability and promotes cancer metastasis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6993218/
https://www.ncbi.nlm.nih.gov/pubmed/32042335
http://dx.doi.org/10.7150/thno.39013
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