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Metallothionein-1G suppresses pancreatic cancer cell stemness by limiting activin A secretion via NF-κB inhibition

Resistance to chemotherapy is a long-standing problem in the management of cancer, and cancer stem cells are regarded as the main source of this resistance. This study aimed to investigate metallothionein (MT)-1G involvement in the regulation of cancer stemness and provide a strategy to overcome che...

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Autores principales: Li, Kai, Zhang, Zhicheng, Mei, Yu, Yang, Qingzhu, Qiao, Shupei, Ni, Cheng, Yao, Yao, Li, Xinyuan, Li, Mengmeng, Wei, Dongdong, Fu, Wangjun, Guo, Xuefei, Huang, Xuemei, Yang, Huanjie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7847690/
https://www.ncbi.nlm.nih.gov/pubmed/33537082
http://dx.doi.org/10.7150/thno.51976
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author Li, Kai
Zhang, Zhicheng
Mei, Yu
Yang, Qingzhu
Qiao, Shupei
Ni, Cheng
Yao, Yao
Li, Xinyuan
Li, Mengmeng
Wei, Dongdong
Fu, Wangjun
Guo, Xuefei
Huang, Xuemei
Yang, Huanjie
author_facet Li, Kai
Zhang, Zhicheng
Mei, Yu
Yang, Qingzhu
Qiao, Shupei
Ni, Cheng
Yao, Yao
Li, Xinyuan
Li, Mengmeng
Wei, Dongdong
Fu, Wangjun
Guo, Xuefei
Huang, Xuemei
Yang, Huanjie
author_sort Li, Kai
collection PubMed
description Resistance to chemotherapy is a long-standing problem in the management of cancer, and cancer stem cells are regarded as the main source of this resistance. This study aimed to investigate metallothionein (MT)-1G involvement in the regulation of cancer stemness and provide a strategy to overcome chemoresistance in pancreatic ductal adenocarcinoma (PDAC). Methods: MT1G was identified as a critical factor related with gemcitabine resistance in PDAC cells by mRNA microarray. Its effects on PDAC stemness were evaluated through sphere formation and tumorigenicity. LC-MS/MS analysis of conditional medium revealed that activin A, a NF-κB target, was a major protein secreted from gemcitabine resistant PDAC cells. Both loss-of-function and gain-of-function approaches were used to validate that MT1G inhibited NF-κB-activin A pathway. Orthotopic pancreatic tumor model was employed to explore the effects on gemcitabine resistance with recombinant follistatin to block activin A. Results: Downregulation of MT1G due to hypermethylation of its promoter is related with pancreatic cancer stemness. Secretome analysis revealed that activin A, a NF-κB target, was highly secreted by drug resistant cells. It promotes pancreatic cancer stemness in Smad4-dependent or independent manners. Mechanistically, MT1G negatively regulates NF-κB signaling and promotes the degradation of NF-κB p65 subunit by enhancing the expression of E3 ligase TRAF7. Blockade of activin A signaling with follistatin could overcome gemcitabine resistance. Conclusions: MT1G suppresses PDAC stemness by limiting activin A secretion via NF-κB inhibition. The blockade of the activin A signaling with follistatin may provide a promising therapeutic strategy for overcoming gemcitabine resistance in PDAC.
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spelling pubmed-78476902021-02-02 Metallothionein-1G suppresses pancreatic cancer cell stemness by limiting activin A secretion via NF-κB inhibition Li, Kai Zhang, Zhicheng Mei, Yu Yang, Qingzhu Qiao, Shupei Ni, Cheng Yao, Yao Li, Xinyuan Li, Mengmeng Wei, Dongdong Fu, Wangjun Guo, Xuefei Huang, Xuemei Yang, Huanjie Theranostics Research Paper Resistance to chemotherapy is a long-standing problem in the management of cancer, and cancer stem cells are regarded as the main source of this resistance. This study aimed to investigate metallothionein (MT)-1G involvement in the regulation of cancer stemness and provide a strategy to overcome chemoresistance in pancreatic ductal adenocarcinoma (PDAC). Methods: MT1G was identified as a critical factor related with gemcitabine resistance in PDAC cells by mRNA microarray. Its effects on PDAC stemness were evaluated through sphere formation and tumorigenicity. LC-MS/MS analysis of conditional medium revealed that activin A, a NF-κB target, was a major protein secreted from gemcitabine resistant PDAC cells. Both loss-of-function and gain-of-function approaches were used to validate that MT1G inhibited NF-κB-activin A pathway. Orthotopic pancreatic tumor model was employed to explore the effects on gemcitabine resistance with recombinant follistatin to block activin A. Results: Downregulation of MT1G due to hypermethylation of its promoter is related with pancreatic cancer stemness. Secretome analysis revealed that activin A, a NF-κB target, was highly secreted by drug resistant cells. It promotes pancreatic cancer stemness in Smad4-dependent or independent manners. Mechanistically, MT1G negatively regulates NF-κB signaling and promotes the degradation of NF-κB p65 subunit by enhancing the expression of E3 ligase TRAF7. Blockade of activin A signaling with follistatin could overcome gemcitabine resistance. Conclusions: MT1G suppresses PDAC stemness by limiting activin A secretion via NF-κB inhibition. The blockade of the activin A signaling with follistatin may provide a promising therapeutic strategy for overcoming gemcitabine resistance in PDAC. Ivyspring International Publisher 2021-01-01 /pmc/articles/PMC7847690/ /pubmed/33537082 http://dx.doi.org/10.7150/thno.51976 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
Li, Kai
Zhang, Zhicheng
Mei, Yu
Yang, Qingzhu
Qiao, Shupei
Ni, Cheng
Yao, Yao
Li, Xinyuan
Li, Mengmeng
Wei, Dongdong
Fu, Wangjun
Guo, Xuefei
Huang, Xuemei
Yang, Huanjie
Metallothionein-1G suppresses pancreatic cancer cell stemness by limiting activin A secretion via NF-κB inhibition
title Metallothionein-1G suppresses pancreatic cancer cell stemness by limiting activin A secretion via NF-κB inhibition
title_full Metallothionein-1G suppresses pancreatic cancer cell stemness by limiting activin A secretion via NF-κB inhibition
title_fullStr Metallothionein-1G suppresses pancreatic cancer cell stemness by limiting activin A secretion via NF-κB inhibition
title_full_unstemmed Metallothionein-1G suppresses pancreatic cancer cell stemness by limiting activin A secretion via NF-κB inhibition
title_short Metallothionein-1G suppresses pancreatic cancer cell stemness by limiting activin A secretion via NF-κB inhibition
title_sort metallothionein-1g suppresses pancreatic cancer cell stemness by limiting activin a secretion via nf-κb inhibition
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7847690/
https://www.ncbi.nlm.nih.gov/pubmed/33537082
http://dx.doi.org/10.7150/thno.51976
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