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Novel mitochondrion‐targeting copper(II) complex induces HK2 malfunction and inhibits glycolysis via Drp1‐mediating mitophagy in HCC

[Cu(ttpy‐tpp)Br(2)]Br (abbreviated as CTB) is a novel mitochondrion‐targeting copper(II) complex synthesized by our research group, which contains tri‐phenyl‐phosphonium (TPP) groups as its lipophilic property. In this study, we explored how CTB affects mitochondrial functions and exerts its anti‐tu...

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Autores principales: Li, Mengmeng, Shao, Jiangjuan, Guo, Zijian, Jin, Chun, Wang, Ling, Wang, Feixia, Jia, Yan, Zhu, Zhenzhu, Zhang, Ziji, Zhang, Feng, Zheng, Shizhong, Wang, Xiaoyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7077532/
https://www.ncbi.nlm.nih.gov/pubmed/31994339
http://dx.doi.org/10.1111/jcmm.14971
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author Li, Mengmeng
Shao, Jiangjuan
Guo, Zijian
Jin, Chun
Wang, Ling
Wang, Feixia
Jia, Yan
Zhu, Zhenzhu
Zhang, Ziji
Zhang, Feng
Zheng, Shizhong
Wang, Xiaoyong
author_facet Li, Mengmeng
Shao, Jiangjuan
Guo, Zijian
Jin, Chun
Wang, Ling
Wang, Feixia
Jia, Yan
Zhu, Zhenzhu
Zhang, Ziji
Zhang, Feng
Zheng, Shizhong
Wang, Xiaoyong
author_sort Li, Mengmeng
collection PubMed
description [Cu(ttpy‐tpp)Br(2)]Br (abbreviated as CTB) is a novel mitochondrion‐targeting copper(II) complex synthesized by our research group, which contains tri‐phenyl‐phosphonium (TPP) groups as its lipophilic property. In this study, we explored how CTB affects mitochondrial functions and exerts its anti‐tumour activity. Multiple functional and molecular analyses including Seahorse XF Bioanalyzer Platform, Western blot, immunofluorescence analysis, co‐immunoprecipitation and transmission electron microscopy were used to elucidate the underlying mechanisms. Human hepatoma cells were subcutaneously injected into right armpit of male nude mice for evaluating the effects of CTB in vivo. We discovered that CTB inhibited aerobic glycolysis and cell acidification by impairing the activity of HK2 in hepatoma cells, accompanied by dissociation of HK2 from mitochondria. The modification of HK2 not only led to the complete dissipation of mitochondrial membrane potential (MMP) but also promoted the opening of mitochondrial permeability transition pore (mPTP), contributing to the activation of mitophagy. In addition, CTB co‐ordinately promoted dynamin‐related protein 1 (Drp1) recruitment in mitochondria to induce mitochondrial fission. Our findings established a previously unrecognized role for copper complex in aerobic glycolysis of tumour cells, revealing the interaction between mitochondrial HK2‐mediated mitophagy and Drp1‐regulated mitochondrial fission.
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spelling pubmed-70775322020-03-19 Novel mitochondrion‐targeting copper(II) complex induces HK2 malfunction and inhibits glycolysis via Drp1‐mediating mitophagy in HCC Li, Mengmeng Shao, Jiangjuan Guo, Zijian Jin, Chun Wang, Ling Wang, Feixia Jia, Yan Zhu, Zhenzhu Zhang, Ziji Zhang, Feng Zheng, Shizhong Wang, Xiaoyong J Cell Mol Med Original Articles [Cu(ttpy‐tpp)Br(2)]Br (abbreviated as CTB) is a novel mitochondrion‐targeting copper(II) complex synthesized by our research group, which contains tri‐phenyl‐phosphonium (TPP) groups as its lipophilic property. In this study, we explored how CTB affects mitochondrial functions and exerts its anti‐tumour activity. Multiple functional and molecular analyses including Seahorse XF Bioanalyzer Platform, Western blot, immunofluorescence analysis, co‐immunoprecipitation and transmission electron microscopy were used to elucidate the underlying mechanisms. Human hepatoma cells were subcutaneously injected into right armpit of male nude mice for evaluating the effects of CTB in vivo. We discovered that CTB inhibited aerobic glycolysis and cell acidification by impairing the activity of HK2 in hepatoma cells, accompanied by dissociation of HK2 from mitochondria. The modification of HK2 not only led to the complete dissipation of mitochondrial membrane potential (MMP) but also promoted the opening of mitochondrial permeability transition pore (mPTP), contributing to the activation of mitophagy. In addition, CTB co‐ordinately promoted dynamin‐related protein 1 (Drp1) recruitment in mitochondria to induce mitochondrial fission. Our findings established a previously unrecognized role for copper complex in aerobic glycolysis of tumour cells, revealing the interaction between mitochondrial HK2‐mediated mitophagy and Drp1‐regulated mitochondrial fission. John Wiley and Sons Inc. 2020-01-28 2020-03 /pmc/articles/PMC7077532/ /pubmed/31994339 http://dx.doi.org/10.1111/jcmm.14971 Text en © 2020 The Authors. Journal of Cellular and Molecular Medicine published by John Wiley & Sons Ltd and Foundation for Cellular and Molecular Medicine. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Li, Mengmeng
Shao, Jiangjuan
Guo, Zijian
Jin, Chun
Wang, Ling
Wang, Feixia
Jia, Yan
Zhu, Zhenzhu
Zhang, Ziji
Zhang, Feng
Zheng, Shizhong
Wang, Xiaoyong
Novel mitochondrion‐targeting copper(II) complex induces HK2 malfunction and inhibits glycolysis via Drp1‐mediating mitophagy in HCC
title Novel mitochondrion‐targeting copper(II) complex induces HK2 malfunction and inhibits glycolysis via Drp1‐mediating mitophagy in HCC
title_full Novel mitochondrion‐targeting copper(II) complex induces HK2 malfunction and inhibits glycolysis via Drp1‐mediating mitophagy in HCC
title_fullStr Novel mitochondrion‐targeting copper(II) complex induces HK2 malfunction and inhibits glycolysis via Drp1‐mediating mitophagy in HCC
title_full_unstemmed Novel mitochondrion‐targeting copper(II) complex induces HK2 malfunction and inhibits glycolysis via Drp1‐mediating mitophagy in HCC
title_short Novel mitochondrion‐targeting copper(II) complex induces HK2 malfunction and inhibits glycolysis via Drp1‐mediating mitophagy in HCC
title_sort novel mitochondrion‐targeting copper(ii) complex induces hk2 malfunction and inhibits glycolysis via drp1‐mediating mitophagy in hcc
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7077532/
https://www.ncbi.nlm.nih.gov/pubmed/31994339
http://dx.doi.org/10.1111/jcmm.14971
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