Cargando…

A hypermethylation strategy utilized by enhancer-bound CARM1 to promote estrogen receptor α-dependent transcriptional activation and breast carcinogenesis

While protein arginine methyltransferases (PRMTs) and PRMT-catalyzed protein methylation have been well-known to be involved in a myriad of biological processes, their functions and the underlying molecular mechanisms in cancers, particularly in estrogen receptor alpha (ERα)-positive breast cancers,...

Descripción completa

Detalles Bibliográficos
Autores principales: Peng, Bing-ling, Li, Wen-juan, Ding, Jian-cheng, He, Yao-hui, Ran, Ting, Xie, Bing-lan, Wang, Zi-rui, Shen, Hai-feng, Xiao, Rong-quan, Gao, Wei-wei, Ye, Tian-yi, Gao, Xiang, Liu, Wen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7069091/
https://www.ncbi.nlm.nih.gov/pubmed/32206101
http://dx.doi.org/10.7150/thno.39241
_version_ 1783505710207729664
author Peng, Bing-ling
Li, Wen-juan
Ding, Jian-cheng
He, Yao-hui
Ran, Ting
Xie, Bing-lan
Wang, Zi-rui
Shen, Hai-feng
Xiao, Rong-quan
Gao, Wei-wei
Ye, Tian-yi
Gao, Xiang
Liu, Wen
author_facet Peng, Bing-ling
Li, Wen-juan
Ding, Jian-cheng
He, Yao-hui
Ran, Ting
Xie, Bing-lan
Wang, Zi-rui
Shen, Hai-feng
Xiao, Rong-quan
Gao, Wei-wei
Ye, Tian-yi
Gao, Xiang
Liu, Wen
author_sort Peng, Bing-ling
collection PubMed
description While protein arginine methyltransferases (PRMTs) and PRMT-catalyzed protein methylation have been well-known to be involved in a myriad of biological processes, their functions and the underlying molecular mechanisms in cancers, particularly in estrogen receptor alpha (ERα)-positive breast cancers, remain incompletely understood. Here we focused on investigating PRMT4 (also called coactivator associated arginine methyltransferase 1, CARM1) in ERα-positive breast cancers due to its high expression and the associated poor prognosis. Methods: ChIP-seq and RNA-seq were employed to identify the chromatin-binding landscape and transcriptional targets of CARM1, respectively, in the presence of estrogen in ERα-positive MCF7 breast cancer cells. High-resolution mass spectrometry analysis of enriched peptides from anti-monomethyl- and anti-asymmetric dimethyl-arginine antibodies in SILAC labeled wild-type and CARM1 knockout cells were performed to globally map CARM1 methylation substrates. Cell viability was measured by MTS and colony formation assay, and cell cycle was measured by FACS analysis. Cell migration and invasion capacities were examined by wound-healing and trans-well assay, respectively. Xenograft assay was used to analyze tumor growth in vivo. Results: CARM1 was found to be predominantly and specifically recruited to ERα-bound active enhancers and essential for the transcriptional activation of cognate estrogen-induced genes in response to estrogen treatment. Global mapping of CARM1 substrates revealed that CARM1 methylated a large cohort of proteins with diverse biological functions, including regulation of intracellular estrogen receptor-mediated signaling, chromatin organization and chromatin remodeling. A large number of CARM1 substrates were found to be exclusively hypermethylated by CARM1 on a cluster of arginine residues. Exemplified by MED12, hypermethylation of these proteins by CARM1 served as a molecular beacon for recruiting coactivator protein, tudor-domain-containing protein 3 (TDRD3), to CARM1-bound active enhancers to activate estrogen/ERα-target genes. In consistent with its critical role in estrogen/ERα-induced gene transcriptional activation, CARM1 was found to promote cell proliferation of ERα-positive breast cancer cells in vitro and tumor growth in mice. Conclusions: our study uncovered a “hypermethylation” strategy utilized by enhancer-bound CARM1 in gene transcriptional regulation, and suggested that CARM1 can server as a therapeutic target for breast cancer treatment.
format Online
Article
Text
id pubmed-7069091
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-70690912020-03-23 A hypermethylation strategy utilized by enhancer-bound CARM1 to promote estrogen receptor α-dependent transcriptional activation and breast carcinogenesis Peng, Bing-ling Li, Wen-juan Ding, Jian-cheng He, Yao-hui Ran, Ting Xie, Bing-lan Wang, Zi-rui Shen, Hai-feng Xiao, Rong-quan Gao, Wei-wei Ye, Tian-yi Gao, Xiang Liu, Wen Theranostics Research Paper While protein arginine methyltransferases (PRMTs) and PRMT-catalyzed protein methylation have been well-known to be involved in a myriad of biological processes, their functions and the underlying molecular mechanisms in cancers, particularly in estrogen receptor alpha (ERα)-positive breast cancers, remain incompletely understood. Here we focused on investigating PRMT4 (also called coactivator associated arginine methyltransferase 1, CARM1) in ERα-positive breast cancers due to its high expression and the associated poor prognosis. Methods: ChIP-seq and RNA-seq were employed to identify the chromatin-binding landscape and transcriptional targets of CARM1, respectively, in the presence of estrogen in ERα-positive MCF7 breast cancer cells. High-resolution mass spectrometry analysis of enriched peptides from anti-monomethyl- and anti-asymmetric dimethyl-arginine antibodies in SILAC labeled wild-type and CARM1 knockout cells were performed to globally map CARM1 methylation substrates. Cell viability was measured by MTS and colony formation assay, and cell cycle was measured by FACS analysis. Cell migration and invasion capacities were examined by wound-healing and trans-well assay, respectively. Xenograft assay was used to analyze tumor growth in vivo. Results: CARM1 was found to be predominantly and specifically recruited to ERα-bound active enhancers and essential for the transcriptional activation of cognate estrogen-induced genes in response to estrogen treatment. Global mapping of CARM1 substrates revealed that CARM1 methylated a large cohort of proteins with diverse biological functions, including regulation of intracellular estrogen receptor-mediated signaling, chromatin organization and chromatin remodeling. A large number of CARM1 substrates were found to be exclusively hypermethylated by CARM1 on a cluster of arginine residues. Exemplified by MED12, hypermethylation of these proteins by CARM1 served as a molecular beacon for recruiting coactivator protein, tudor-domain-containing protein 3 (TDRD3), to CARM1-bound active enhancers to activate estrogen/ERα-target genes. In consistent with its critical role in estrogen/ERα-induced gene transcriptional activation, CARM1 was found to promote cell proliferation of ERα-positive breast cancer cells in vitro and tumor growth in mice. Conclusions: our study uncovered a “hypermethylation” strategy utilized by enhancer-bound CARM1 in gene transcriptional regulation, and suggested that CARM1 can server as a therapeutic target for breast cancer treatment. Ivyspring International Publisher 2020-02-10 /pmc/articles/PMC7069091/ /pubmed/32206101 http://dx.doi.org/10.7150/thno.39241 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
Peng, Bing-ling
Li, Wen-juan
Ding, Jian-cheng
He, Yao-hui
Ran, Ting
Xie, Bing-lan
Wang, Zi-rui
Shen, Hai-feng
Xiao, Rong-quan
Gao, Wei-wei
Ye, Tian-yi
Gao, Xiang
Liu, Wen
A hypermethylation strategy utilized by enhancer-bound CARM1 to promote estrogen receptor α-dependent transcriptional activation and breast carcinogenesis
title A hypermethylation strategy utilized by enhancer-bound CARM1 to promote estrogen receptor α-dependent transcriptional activation and breast carcinogenesis
title_full A hypermethylation strategy utilized by enhancer-bound CARM1 to promote estrogen receptor α-dependent transcriptional activation and breast carcinogenesis
title_fullStr A hypermethylation strategy utilized by enhancer-bound CARM1 to promote estrogen receptor α-dependent transcriptional activation and breast carcinogenesis
title_full_unstemmed A hypermethylation strategy utilized by enhancer-bound CARM1 to promote estrogen receptor α-dependent transcriptional activation and breast carcinogenesis
title_short A hypermethylation strategy utilized by enhancer-bound CARM1 to promote estrogen receptor α-dependent transcriptional activation and breast carcinogenesis
title_sort hypermethylation strategy utilized by enhancer-bound carm1 to promote estrogen receptor α-dependent transcriptional activation and breast carcinogenesis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7069091/
https://www.ncbi.nlm.nih.gov/pubmed/32206101
http://dx.doi.org/10.7150/thno.39241
work_keys_str_mv AT pengbingling ahypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT liwenjuan ahypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT dingjiancheng ahypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT heyaohui ahypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT ranting ahypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT xiebinglan ahypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT wangzirui ahypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT shenhaifeng ahypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT xiaorongquan ahypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT gaoweiwei ahypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT yetianyi ahypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT gaoxiang ahypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT liuwen ahypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT pengbingling hypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT liwenjuan hypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT dingjiancheng hypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT heyaohui hypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT ranting hypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT xiebinglan hypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT wangzirui hypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT shenhaifeng hypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT xiaorongquan hypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT gaoweiwei hypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT yetianyi hypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT gaoxiang hypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis
AT liuwen hypermethylationstrategyutilizedbyenhancerboundcarm1topromoteestrogenreceptoradependenttranscriptionalactivationandbreastcarcinogenesis