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ER translocon inhibitor ipomoeassin F inhibits triple-negative breast cancer growth via blocking ER molecular chaperones

Triple-negative breast cancer (TNBC) is an aggressive type of breast cancer where no effective therapy has been developed. Here, we report that the natural product ER translocon inhibitor ipomoeassin F is a selective inhibitor of TNBC cell growth. A proteomic analysis of TNBC cells revealed that ipo...

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Autores principales: Tao, Shishi, Yang, Eun Ju, Zong, Guanghui, Mou, Pui Kei, Ren, Guowen, Pu, Yue, Chen, Liang, Kwon, Ho Jeong, Zhou, Jianhong, Hu, Zhijian, Khosravi, Arman, Zhang, Qingyang, Du, Yuchun, Shi, Wei Q., Shim, Joong Sup
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10496495/
https://www.ncbi.nlm.nih.gov/pubmed/37705743
http://dx.doi.org/10.7150/ijbs.82012
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author Tao, Shishi
Yang, Eun Ju
Zong, Guanghui
Mou, Pui Kei
Ren, Guowen
Pu, Yue
Chen, Liang
Kwon, Ho Jeong
Zhou, Jianhong
Hu, Zhijian
Khosravi, Arman
Zhang, Qingyang
Du, Yuchun
Shi, Wei Q.
Shim, Joong Sup
author_facet Tao, Shishi
Yang, Eun Ju
Zong, Guanghui
Mou, Pui Kei
Ren, Guowen
Pu, Yue
Chen, Liang
Kwon, Ho Jeong
Zhou, Jianhong
Hu, Zhijian
Khosravi, Arman
Zhang, Qingyang
Du, Yuchun
Shi, Wei Q.
Shim, Joong Sup
author_sort Tao, Shishi
collection PubMed
description Triple-negative breast cancer (TNBC) is an aggressive type of breast cancer where no effective therapy has been developed. Here, we report that the natural product ER translocon inhibitor ipomoeassin F is a selective inhibitor of TNBC cell growth. A proteomic analysis of TNBC cells revealed that ipomoeassin F significantly reduced the levels of ER molecular chaperones, including PDIA6 and PDIA4, and induced ER stress, unfolded protein response (UPR) and autophagy in TNBC cells. Mechanistically, ipomoeassin F, as an inhibitor of Sec61α-containing ER translocon, blocks ER translocation of PDIA6, inducing its proteasomal degradation. Silencing of PDIA6 or PDIA4 by RNA interferences or treatment with a small molecule inhibitor of the protein disulfide isomerases in TNBC cells successfully recapitulated the ipomoeassin F phenotypes, including the induction of ER stress, UPR and autophagy, suggesting that the reduction of PDIAs is the key mediator of the pharmacological effects of ipomoeassin F. Moreover, ipomoeassin F significantly suppressed TNBC growth in a mouse tumor xenograft model, with a marked reduction in PDIA6 and PDIA4 levels in the tumor samples. Our study demonstrates that Sec61α-containing ER translocon and PDIAs are potential drug targets for TNBC and suggests that ipomoeassin F could serve as a lead for developing ER translocon-targeted therapy for TNBC.
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spelling pubmed-104964952023-09-13 ER translocon inhibitor ipomoeassin F inhibits triple-negative breast cancer growth via blocking ER molecular chaperones Tao, Shishi Yang, Eun Ju Zong, Guanghui Mou, Pui Kei Ren, Guowen Pu, Yue Chen, Liang Kwon, Ho Jeong Zhou, Jianhong Hu, Zhijian Khosravi, Arman Zhang, Qingyang Du, Yuchun Shi, Wei Q. Shim, Joong Sup Int J Biol Sci Research Paper Triple-negative breast cancer (TNBC) is an aggressive type of breast cancer where no effective therapy has been developed. Here, we report that the natural product ER translocon inhibitor ipomoeassin F is a selective inhibitor of TNBC cell growth. A proteomic analysis of TNBC cells revealed that ipomoeassin F significantly reduced the levels of ER molecular chaperones, including PDIA6 and PDIA4, and induced ER stress, unfolded protein response (UPR) and autophagy in TNBC cells. Mechanistically, ipomoeassin F, as an inhibitor of Sec61α-containing ER translocon, blocks ER translocation of PDIA6, inducing its proteasomal degradation. Silencing of PDIA6 or PDIA4 by RNA interferences or treatment with a small molecule inhibitor of the protein disulfide isomerases in TNBC cells successfully recapitulated the ipomoeassin F phenotypes, including the induction of ER stress, UPR and autophagy, suggesting that the reduction of PDIAs is the key mediator of the pharmacological effects of ipomoeassin F. Moreover, ipomoeassin F significantly suppressed TNBC growth in a mouse tumor xenograft model, with a marked reduction in PDIA6 and PDIA4 levels in the tumor samples. Our study demonstrates that Sec61α-containing ER translocon and PDIAs are potential drug targets for TNBC and suggests that ipomoeassin F could serve as a lead for developing ER translocon-targeted therapy for TNBC. Ivyspring International Publisher 2023-07-31 /pmc/articles/PMC10496495/ /pubmed/37705743 http://dx.doi.org/10.7150/ijbs.82012 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/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
Tao, Shishi
Yang, Eun Ju
Zong, Guanghui
Mou, Pui Kei
Ren, Guowen
Pu, Yue
Chen, Liang
Kwon, Ho Jeong
Zhou, Jianhong
Hu, Zhijian
Khosravi, Arman
Zhang, Qingyang
Du, Yuchun
Shi, Wei Q.
Shim, Joong Sup
ER translocon inhibitor ipomoeassin F inhibits triple-negative breast cancer growth via blocking ER molecular chaperones
title ER translocon inhibitor ipomoeassin F inhibits triple-negative breast cancer growth via blocking ER molecular chaperones
title_full ER translocon inhibitor ipomoeassin F inhibits triple-negative breast cancer growth via blocking ER molecular chaperones
title_fullStr ER translocon inhibitor ipomoeassin F inhibits triple-negative breast cancer growth via blocking ER molecular chaperones
title_full_unstemmed ER translocon inhibitor ipomoeassin F inhibits triple-negative breast cancer growth via blocking ER molecular chaperones
title_short ER translocon inhibitor ipomoeassin F inhibits triple-negative breast cancer growth via blocking ER molecular chaperones
title_sort er translocon inhibitor ipomoeassin f inhibits triple-negative breast cancer growth via blocking er molecular chaperones
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10496495/
https://www.ncbi.nlm.nih.gov/pubmed/37705743
http://dx.doi.org/10.7150/ijbs.82012
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