Cargando…

EBV(LMP1)-induced metabolic reprogramming inhibits necroptosis through the hypermethylation of the RIP3 promoter

EBV infection is a recognized epigenetic driver of carcinogenesis. We previously showed that EBV could protect cancer cells from TNF-induced necroptosis. This study aims to explore the epigenetic mechanisms allowing cancer cells with EBV infection to escape from RIP3-dependent necroptosis. Methods:...

Descripción completa

Detalles Bibliográficos
Autores principales: Shi, Feng, Zhou, Min, Shang, Li, Du, Qianqian, Li, Yueshuo, Xie, Longlong, Liu, Xiaolan, Tang, Min, Luo, Xiangjian, Fan, Jia, Zhou, Jian, Gao, Qiang, Qiu, ShuangJian, Wu, Weizhong, Zhang, Xin, Bode, Ann M., Cao, Ya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6525991/
https://www.ncbi.nlm.nih.gov/pubmed/31131045
http://dx.doi.org/10.7150/thno.30941
_version_ 1783419810704523264
author Shi, Feng
Zhou, Min
Shang, Li
Du, Qianqian
Li, Yueshuo
Xie, Longlong
Liu, Xiaolan
Tang, Min
Luo, Xiangjian
Fan, Jia
Zhou, Jian
Gao, Qiang
Qiu, ShuangJian
Wu, Weizhong
Zhang, Xin
Bode, Ann M.
Cao, Ya
author_facet Shi, Feng
Zhou, Min
Shang, Li
Du, Qianqian
Li, Yueshuo
Xie, Longlong
Liu, Xiaolan
Tang, Min
Luo, Xiangjian
Fan, Jia
Zhou, Jian
Gao, Qiang
Qiu, ShuangJian
Wu, Weizhong
Zhang, Xin
Bode, Ann M.
Cao, Ya
author_sort Shi, Feng
collection PubMed
description EBV infection is a recognized epigenetic driver of carcinogenesis. We previously showed that EBV could protect cancer cells from TNF-induced necroptosis. This study aims to explore the epigenetic mechanisms allowing cancer cells with EBV infection to escape from RIP3-dependent necroptosis. Methods: Data from the TCGA database were used to evaluate the prognostic value of RIP3 promoter methylation and its expression. Western blotting, real-time PCR, and immunochemistry were conducted to investigate the relationship between LMP1 and RIP3 in cell lines and NPC tissues. BSP, MSP and hMeDIP assays were used to examine the methylation level. Induction of necroptosis was detected by cell viability assay, p-MLKL, and Sytox Green staining. Results: RIP3 promoter hypermethylation is an independent prognostic factor of poorer disease-free and overall survival in HNSCC patients, respectively. RIP3 is down-regulated in NPC (a subtype of HNSCC). EBV(LMP1) suppresses RIP3 expression by hypermethylation of the RIP3 promoter. RIP3 protein expression was inversely correlated with LMP1 expression in NPC tissues. Restoring RIP3 expression in EBV(LMP1)-positive cells inhibits xenograft tumor growth. The accumulation of fumarate and reduction of α-KG in EBV(LMP1)-positive cells led to RIP3 silencing due to the inactivation of TETs. Decreased FH activity caused fumarate accumulation, which might be associated with its acetylation. Incubating cells with fumarate protected NPC cells from TNF-induced necroptosis. Conclusion: These results demonstrate a pathway by which EBV(LMP1)-associated metabolite changes inhibited necroptosis signaling by DNA methylation, and shed light on the mechanism underlying EBV-related carcinogenesis, which may provide new options for cancer diagnosis and therapy.
format Online
Article
Text
id pubmed-6525991
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-65259912019-05-26 EBV(LMP1)-induced metabolic reprogramming inhibits necroptosis through the hypermethylation of the RIP3 promoter Shi, Feng Zhou, Min Shang, Li Du, Qianqian Li, Yueshuo Xie, Longlong Liu, Xiaolan Tang, Min Luo, Xiangjian Fan, Jia Zhou, Jian Gao, Qiang Qiu, ShuangJian Wu, Weizhong Zhang, Xin Bode, Ann M. Cao, Ya Theranostics Research Paper EBV infection is a recognized epigenetic driver of carcinogenesis. We previously showed that EBV could protect cancer cells from TNF-induced necroptosis. This study aims to explore the epigenetic mechanisms allowing cancer cells with EBV infection to escape from RIP3-dependent necroptosis. Methods: Data from the TCGA database were used to evaluate the prognostic value of RIP3 promoter methylation and its expression. Western blotting, real-time PCR, and immunochemistry were conducted to investigate the relationship between LMP1 and RIP3 in cell lines and NPC tissues. BSP, MSP and hMeDIP assays were used to examine the methylation level. Induction of necroptosis was detected by cell viability assay, p-MLKL, and Sytox Green staining. Results: RIP3 promoter hypermethylation is an independent prognostic factor of poorer disease-free and overall survival in HNSCC patients, respectively. RIP3 is down-regulated in NPC (a subtype of HNSCC). EBV(LMP1) suppresses RIP3 expression by hypermethylation of the RIP3 promoter. RIP3 protein expression was inversely correlated with LMP1 expression in NPC tissues. Restoring RIP3 expression in EBV(LMP1)-positive cells inhibits xenograft tumor growth. The accumulation of fumarate and reduction of α-KG in EBV(LMP1)-positive cells led to RIP3 silencing due to the inactivation of TETs. Decreased FH activity caused fumarate accumulation, which might be associated with its acetylation. Incubating cells with fumarate protected NPC cells from TNF-induced necroptosis. Conclusion: These results demonstrate a pathway by which EBV(LMP1)-associated metabolite changes inhibited necroptosis signaling by DNA methylation, and shed light on the mechanism underlying EBV-related carcinogenesis, which may provide new options for cancer diagnosis and therapy. Ivyspring International Publisher 2019-04-13 /pmc/articles/PMC6525991/ /pubmed/31131045 http://dx.doi.org/10.7150/thno.30941 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Shi, Feng
Zhou, Min
Shang, Li
Du, Qianqian
Li, Yueshuo
Xie, Longlong
Liu, Xiaolan
Tang, Min
Luo, Xiangjian
Fan, Jia
Zhou, Jian
Gao, Qiang
Qiu, ShuangJian
Wu, Weizhong
Zhang, Xin
Bode, Ann M.
Cao, Ya
EBV(LMP1)-induced metabolic reprogramming inhibits necroptosis through the hypermethylation of the RIP3 promoter
title EBV(LMP1)-induced metabolic reprogramming inhibits necroptosis through the hypermethylation of the RIP3 promoter
title_full EBV(LMP1)-induced metabolic reprogramming inhibits necroptosis through the hypermethylation of the RIP3 promoter
title_fullStr EBV(LMP1)-induced metabolic reprogramming inhibits necroptosis through the hypermethylation of the RIP3 promoter
title_full_unstemmed EBV(LMP1)-induced metabolic reprogramming inhibits necroptosis through the hypermethylation of the RIP3 promoter
title_short EBV(LMP1)-induced metabolic reprogramming inhibits necroptosis through the hypermethylation of the RIP3 promoter
title_sort ebv(lmp1)-induced metabolic reprogramming inhibits necroptosis through the hypermethylation of the rip3 promoter
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6525991/
https://www.ncbi.nlm.nih.gov/pubmed/31131045
http://dx.doi.org/10.7150/thno.30941
work_keys_str_mv AT shifeng ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT zhoumin ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT shangli ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT duqianqian ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT liyueshuo ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT xielonglong ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT liuxiaolan ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT tangmin ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT luoxiangjian ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT fanjia ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT zhoujian ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT gaoqiang ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT qiushuangjian ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT wuweizhong ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT zhangxin ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT bodeannm ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter
AT caoya ebvlmp1inducedmetabolicreprogramminginhibitsnecroptosisthroughthehypermethylationoftherip3promoter