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Sequential Ubiquitination and Phosphorylation Epigenetics Reshaping by MG132‐Loaded Fe‐MOF Disarms Treatment Resistance to Repulse Metastatic Colorectal Cancer

Abnormal epigenetic regulation is identified to correlate with cancer progression and renders tumor refractory and resistant to reactive oxygen species (ROS)‐based anti‐tumor actions. To address it, a sequential ubiquitination and phosphorylation epigenetics modulation strategy is developed and exem...

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Autores principales: Bu, Zhaoting, Yang, Jianjun, Zhang, Yan, Luo, Tao, Fang, Chao, Liang, Xiayi, Peng, Qiuxia, Wang, Duo, Lin, Ningjing, Zhang, Kun, Tang, Weizhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10427397/
https://www.ncbi.nlm.nih.gov/pubmed/37303273
http://dx.doi.org/10.1002/advs.202301638
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author Bu, Zhaoting
Yang, Jianjun
Zhang, Yan
Luo, Tao
Fang, Chao
Liang, Xiayi
Peng, Qiuxia
Wang, Duo
Lin, Ningjing
Zhang, Kun
Tang, Weizhong
author_facet Bu, Zhaoting
Yang, Jianjun
Zhang, Yan
Luo, Tao
Fang, Chao
Liang, Xiayi
Peng, Qiuxia
Wang, Duo
Lin, Ningjing
Zhang, Kun
Tang, Weizhong
author_sort Bu, Zhaoting
collection PubMed
description Abnormal epigenetic regulation is identified to correlate with cancer progression and renders tumor refractory and resistant to reactive oxygen species (ROS)‐based anti‐tumor actions. To address it, a sequential ubiquitination and phosphorylation epigenetics modulation strategy is developed and exemplified by the well‐established Fe‐metal‐organic framework (Fe‐MOF)‐based chemodynamic therapy (CDT) nanoplatforms that load the 26S proteasome inhibitor (i.e., MG132). The encapsulated MG132 can blockade 26S proteasome, terminate ubiquitination, and further inhibit transcription factor phosphorylation (e.g., NF‐κB p65), which can boost pro‐apoptotic or misfolded protein accumulations, disrupt tumor homeostasis, and down‐regulate driving genes expression of metastatic colorectal cancer (mCRC). Contributed by them, Fe‐MOF‐unlocked CDT is magnified to considerably elevate ROS content for repulsing mCRC, especially after combining with macrophage membrane coating‐enabled tropism accumulation. Systematic experiments reveal the mechanism and signaling pathway of such a sequential ubiquitination and phosphorylation epigenetics modulation and explain how it could blockade ubiquitination and phosphorylation to liberate the therapy resistance to ROS and activate NF‐κB‐related acute immune responses. This unprecedented sequential epigenetics modulation lays a solid foundation to magnify oxidative stress and can serve as a general method to enhance other ROS‐based anti‐tumor methods.
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spelling pubmed-104273972023-08-17 Sequential Ubiquitination and Phosphorylation Epigenetics Reshaping by MG132‐Loaded Fe‐MOF Disarms Treatment Resistance to Repulse Metastatic Colorectal Cancer Bu, Zhaoting Yang, Jianjun Zhang, Yan Luo, Tao Fang, Chao Liang, Xiayi Peng, Qiuxia Wang, Duo Lin, Ningjing Zhang, Kun Tang, Weizhong Adv Sci (Weinh) Research Articles Abnormal epigenetic regulation is identified to correlate with cancer progression and renders tumor refractory and resistant to reactive oxygen species (ROS)‐based anti‐tumor actions. To address it, a sequential ubiquitination and phosphorylation epigenetics modulation strategy is developed and exemplified by the well‐established Fe‐metal‐organic framework (Fe‐MOF)‐based chemodynamic therapy (CDT) nanoplatforms that load the 26S proteasome inhibitor (i.e., MG132). The encapsulated MG132 can blockade 26S proteasome, terminate ubiquitination, and further inhibit transcription factor phosphorylation (e.g., NF‐κB p65), which can boost pro‐apoptotic or misfolded protein accumulations, disrupt tumor homeostasis, and down‐regulate driving genes expression of metastatic colorectal cancer (mCRC). Contributed by them, Fe‐MOF‐unlocked CDT is magnified to considerably elevate ROS content for repulsing mCRC, especially after combining with macrophage membrane coating‐enabled tropism accumulation. Systematic experiments reveal the mechanism and signaling pathway of such a sequential ubiquitination and phosphorylation epigenetics modulation and explain how it could blockade ubiquitination and phosphorylation to liberate the therapy resistance to ROS and activate NF‐κB‐related acute immune responses. This unprecedented sequential epigenetics modulation lays a solid foundation to magnify oxidative stress and can serve as a general method to enhance other ROS‐based anti‐tumor methods. John Wiley and Sons Inc. 2023-06-11 /pmc/articles/PMC10427397/ /pubmed/37303273 http://dx.doi.org/10.1002/advs.202301638 Text en © 2023 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Bu, Zhaoting
Yang, Jianjun
Zhang, Yan
Luo, Tao
Fang, Chao
Liang, Xiayi
Peng, Qiuxia
Wang, Duo
Lin, Ningjing
Zhang, Kun
Tang, Weizhong
Sequential Ubiquitination and Phosphorylation Epigenetics Reshaping by MG132‐Loaded Fe‐MOF Disarms Treatment Resistance to Repulse Metastatic Colorectal Cancer
title Sequential Ubiquitination and Phosphorylation Epigenetics Reshaping by MG132‐Loaded Fe‐MOF Disarms Treatment Resistance to Repulse Metastatic Colorectal Cancer
title_full Sequential Ubiquitination and Phosphorylation Epigenetics Reshaping by MG132‐Loaded Fe‐MOF Disarms Treatment Resistance to Repulse Metastatic Colorectal Cancer
title_fullStr Sequential Ubiquitination and Phosphorylation Epigenetics Reshaping by MG132‐Loaded Fe‐MOF Disarms Treatment Resistance to Repulse Metastatic Colorectal Cancer
title_full_unstemmed Sequential Ubiquitination and Phosphorylation Epigenetics Reshaping by MG132‐Loaded Fe‐MOF Disarms Treatment Resistance to Repulse Metastatic Colorectal Cancer
title_short Sequential Ubiquitination and Phosphorylation Epigenetics Reshaping by MG132‐Loaded Fe‐MOF Disarms Treatment Resistance to Repulse Metastatic Colorectal Cancer
title_sort sequential ubiquitination and phosphorylation epigenetics reshaping by mg132‐loaded fe‐mof disarms treatment resistance to repulse metastatic colorectal cancer
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10427397/
https://www.ncbi.nlm.nih.gov/pubmed/37303273
http://dx.doi.org/10.1002/advs.202301638
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