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NOP2-mediated m5C Modification of c-Myc in an EIF3A-Dependent Manner to Reprogram Glucose Metabolism and Promote Hepatocellular Carcinoma Progression

Mitochondrial dysfunction and glycolysis activation are improtant hallmarks of hepatocellular carcinoma (HCC). NOP2 is an S-adenosyl-L-methionine-dependent methyltransferase that regulates the cell cycle and proliferation activities. In this study, found that NOP2 contributes to HCC progression by p...

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Autores principales: Zhang, Hao, Zhai, Xiangyu, Liu, Yanfeng, Xia, Zhijia, Xia, Tong, Du, Gang, Zhou, Huaxin, Franziska Strohmer, Dorothee, Bazhin, Alexandr V., Li, Ziqiang, Wang, Xianqiang, Jin, Bin, Guo, Deliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10313139/
https://www.ncbi.nlm.nih.gov/pubmed/37398932
http://dx.doi.org/10.34133/research.0184
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author Zhang, Hao
Zhai, Xiangyu
Liu, Yanfeng
Xia, Zhijia
Xia, Tong
Du, Gang
Zhou, Huaxin
Franziska Strohmer, Dorothee
Bazhin, Alexandr V.
Li, Ziqiang
Wang, Xianqiang
Jin, Bin
Guo, Deliang
author_facet Zhang, Hao
Zhai, Xiangyu
Liu, Yanfeng
Xia, Zhijia
Xia, Tong
Du, Gang
Zhou, Huaxin
Franziska Strohmer, Dorothee
Bazhin, Alexandr V.
Li, Ziqiang
Wang, Xianqiang
Jin, Bin
Guo, Deliang
author_sort Zhang, Hao
collection PubMed
description Mitochondrial dysfunction and glycolysis activation are improtant hallmarks of hepatocellular carcinoma (HCC). NOP2 is an S-adenosyl-L-methionine-dependent methyltransferase that regulates the cell cycle and proliferation activities. In this study, found that NOP2 contributes to HCC progression by promoting aerobic glycolysis. Our results revealed that NOP2 was highly expressed in HCC and that it was associated with unfavorable prognosis. NOP2 knockout in combination with sorafenib enhanced sorafenib sensitivity, which, in turn, led to marked tumor growth inhibition. Mechanistically, we identified that NOP2 regulates the c-Myc expression in an m5C-modification manner to promote glycolysis. Moreover, our results revealed that m5C methylation induced c-Myc mRNA degradation in an eukaryotic translation initiation factor 3 subunit A (EIF3A)-dependent manner. In addition, NOP2 was found to increase the expression of the glycolytic genes LDHA, TPI1, PKM2, and ENO1. Furthermore, MYC associated zinc finger protein (MAZ) was identified as the major transcription factor that directly controlled the expression of NOP2 in HCC. Notably, in a patient-derived tumor xenograft (PDX) model, adenovirus-mediated knockout of NOP2 maximized the antitumor effect and prolonged the survival of PDX-bearing mice. Our cumulative findings revealed the novel signaling pathway MAZ/NOP2/c-Myc in HCC and uncovered the important roles of NOP2 and m5C modifications in metabolic reprogramming. Therefore, targeting the MAZ/NOP2/c-Myc signaling pathway is suggested to be a potential therapeutic strategy for the treatment of HCC.
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spelling pubmed-103131392023-07-01 NOP2-mediated m5C Modification of c-Myc in an EIF3A-Dependent Manner to Reprogram Glucose Metabolism and Promote Hepatocellular Carcinoma Progression Zhang, Hao Zhai, Xiangyu Liu, Yanfeng Xia, Zhijia Xia, Tong Du, Gang Zhou, Huaxin Franziska Strohmer, Dorothee Bazhin, Alexandr V. Li, Ziqiang Wang, Xianqiang Jin, Bin Guo, Deliang Research (Wash D C) Research Article Mitochondrial dysfunction and glycolysis activation are improtant hallmarks of hepatocellular carcinoma (HCC). NOP2 is an S-adenosyl-L-methionine-dependent methyltransferase that regulates the cell cycle and proliferation activities. In this study, found that NOP2 contributes to HCC progression by promoting aerobic glycolysis. Our results revealed that NOP2 was highly expressed in HCC and that it was associated with unfavorable prognosis. NOP2 knockout in combination with sorafenib enhanced sorafenib sensitivity, which, in turn, led to marked tumor growth inhibition. Mechanistically, we identified that NOP2 regulates the c-Myc expression in an m5C-modification manner to promote glycolysis. Moreover, our results revealed that m5C methylation induced c-Myc mRNA degradation in an eukaryotic translation initiation factor 3 subunit A (EIF3A)-dependent manner. In addition, NOP2 was found to increase the expression of the glycolytic genes LDHA, TPI1, PKM2, and ENO1. Furthermore, MYC associated zinc finger protein (MAZ) was identified as the major transcription factor that directly controlled the expression of NOP2 in HCC. Notably, in a patient-derived tumor xenograft (PDX) model, adenovirus-mediated knockout of NOP2 maximized the antitumor effect and prolonged the survival of PDX-bearing mice. Our cumulative findings revealed the novel signaling pathway MAZ/NOP2/c-Myc in HCC and uncovered the important roles of NOP2 and m5C modifications in metabolic reprogramming. Therefore, targeting the MAZ/NOP2/c-Myc signaling pathway is suggested to be a potential therapeutic strategy for the treatment of HCC. AAAS 2023-06-30 /pmc/articles/PMC10313139/ /pubmed/37398932 http://dx.doi.org/10.34133/research.0184 Text en Copyright © 2023 Hao Zhang et al. https://creativecommons.org/licenses/by/4.0/Exclusive licensee Science and Technology Review Publishing House. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution License 4.0 (CC BY 4.0) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Zhang, Hao
Zhai, Xiangyu
Liu, Yanfeng
Xia, Zhijia
Xia, Tong
Du, Gang
Zhou, Huaxin
Franziska Strohmer, Dorothee
Bazhin, Alexandr V.
Li, Ziqiang
Wang, Xianqiang
Jin, Bin
Guo, Deliang
NOP2-mediated m5C Modification of c-Myc in an EIF3A-Dependent Manner to Reprogram Glucose Metabolism and Promote Hepatocellular Carcinoma Progression
title NOP2-mediated m5C Modification of c-Myc in an EIF3A-Dependent Manner to Reprogram Glucose Metabolism and Promote Hepatocellular Carcinoma Progression
title_full NOP2-mediated m5C Modification of c-Myc in an EIF3A-Dependent Manner to Reprogram Glucose Metabolism and Promote Hepatocellular Carcinoma Progression
title_fullStr NOP2-mediated m5C Modification of c-Myc in an EIF3A-Dependent Manner to Reprogram Glucose Metabolism and Promote Hepatocellular Carcinoma Progression
title_full_unstemmed NOP2-mediated m5C Modification of c-Myc in an EIF3A-Dependent Manner to Reprogram Glucose Metabolism and Promote Hepatocellular Carcinoma Progression
title_short NOP2-mediated m5C Modification of c-Myc in an EIF3A-Dependent Manner to Reprogram Glucose Metabolism and Promote Hepatocellular Carcinoma Progression
title_sort nop2-mediated m5c modification of c-myc in an eif3a-dependent manner to reprogram glucose metabolism and promote hepatocellular carcinoma progression
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10313139/
https://www.ncbi.nlm.nih.gov/pubmed/37398932
http://dx.doi.org/10.34133/research.0184
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