Cargando…

Galectin-1-Dependent Mitochondria Apoptosis Plays an Essential Role in the Potential Protein Targets of DBDCT-Induced Hepatotoxicity as Revealed by Quantitative Proteomic Analyses

Di-n-butyl-di-(4-chlorobenzohydroxamato) tin(IV) (DBDCT), a new patent agent, exhibited strong antitumor activity. In some cases, its activity was close to or even higher than cisplatin, a first-line clinical metallic agent. Similar to platinum compounds, it also showed toxicity. However, the effect...

Descripción completa

Detalles Bibliográficos
Autores principales: Song, Jiayu, Ren, Yuan, Liu, Lihua, Wang, Yixin, Shi, Chuandao, Ji, Xiaoqing, Li, Yunlan, Li, Qingshan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8824758/
https://www.ncbi.nlm.nih.gov/pubmed/35154294
http://dx.doi.org/10.1155/2022/5176300
_version_ 1784647070152392704
author Song, Jiayu
Ren, Yuan
Liu, Lihua
Wang, Yixin
Shi, Chuandao
Ji, Xiaoqing
Li, Yunlan
Li, Qingshan
author_facet Song, Jiayu
Ren, Yuan
Liu, Lihua
Wang, Yixin
Shi, Chuandao
Ji, Xiaoqing
Li, Yunlan
Li, Qingshan
author_sort Song, Jiayu
collection PubMed
description Di-n-butyl-di-(4-chlorobenzohydroxamato) tin(IV) (DBDCT), a new patent agent, exhibited strong antitumor activity. In some cases, its activity was close to or even higher than cisplatin, a first-line clinical metallic agent. Similar to platinum compounds, it also showed toxicity. However, the effective targets and mechanisms for specific toxicity and biological activity are still unclear. In this study, proteomic analysis revealed that 146 proteins (98 upregulated and 48 downregulated) were differentially identified by label-free LC-MS/MS after DBDCT treatment. Meanwhile, network analysis of these differential proteins suggested that protein Galectin-1 (Gal-1) could regulate the apoptosis process (15 related proteins), which played an essential role in the potential targets of DBDCT-induced hepatotoxicity. Furthermore, it was demonstrated that DBDCT might promote ROS production, activate NF-κB p65, inhibit Ras and p-ERK1/2 expressions, increase the level of Gal-1, subsequently upregulate the expressions of Bax, p53, Fas, and FasL, and downregulate the expression of Bcl-2. As a result of these modulations, caspase cascades were finally activated, which executed apoptosis in HL7702 liver cells. Correspondingly, NAC (inhibitor of ROS), PDTC (inhibitor of NF-κB), EGF (ERK1/2 activator), and OTX008 (inhibitor of Gal-1) were found to reverse and abolish the DBDCT-associated cytotoxicity partially. In conclusion, Gal-1 might be the potential target for toxicity and biological activity. Moreover, the present study will lay the groundwork for future research about di-n-butyl-di-(4-chlorobenzohydroxamato) tin structure optimization and developing it into a new potential anticancer agent.
format Online
Article
Text
id pubmed-8824758
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-88247582022-02-10 Galectin-1-Dependent Mitochondria Apoptosis Plays an Essential Role in the Potential Protein Targets of DBDCT-Induced Hepatotoxicity as Revealed by Quantitative Proteomic Analyses Song, Jiayu Ren, Yuan Liu, Lihua Wang, Yixin Shi, Chuandao Ji, Xiaoqing Li, Yunlan Li, Qingshan Bioinorg Chem Appl Research Article Di-n-butyl-di-(4-chlorobenzohydroxamato) tin(IV) (DBDCT), a new patent agent, exhibited strong antitumor activity. In some cases, its activity was close to or even higher than cisplatin, a first-line clinical metallic agent. Similar to platinum compounds, it also showed toxicity. However, the effective targets and mechanisms for specific toxicity and biological activity are still unclear. In this study, proteomic analysis revealed that 146 proteins (98 upregulated and 48 downregulated) were differentially identified by label-free LC-MS/MS after DBDCT treatment. Meanwhile, network analysis of these differential proteins suggested that protein Galectin-1 (Gal-1) could regulate the apoptosis process (15 related proteins), which played an essential role in the potential targets of DBDCT-induced hepatotoxicity. Furthermore, it was demonstrated that DBDCT might promote ROS production, activate NF-κB p65, inhibit Ras and p-ERK1/2 expressions, increase the level of Gal-1, subsequently upregulate the expressions of Bax, p53, Fas, and FasL, and downregulate the expression of Bcl-2. As a result of these modulations, caspase cascades were finally activated, which executed apoptosis in HL7702 liver cells. Correspondingly, NAC (inhibitor of ROS), PDTC (inhibitor of NF-κB), EGF (ERK1/2 activator), and OTX008 (inhibitor of Gal-1) were found to reverse and abolish the DBDCT-associated cytotoxicity partially. In conclusion, Gal-1 might be the potential target for toxicity and biological activity. Moreover, the present study will lay the groundwork for future research about di-n-butyl-di-(4-chlorobenzohydroxamato) tin structure optimization and developing it into a new potential anticancer agent. Hindawi 2022-02-01 /pmc/articles/PMC8824758/ /pubmed/35154294 http://dx.doi.org/10.1155/2022/5176300 Text en Copyright © 2022 Jiayu Song et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Song, Jiayu
Ren, Yuan
Liu, Lihua
Wang, Yixin
Shi, Chuandao
Ji, Xiaoqing
Li, Yunlan
Li, Qingshan
Galectin-1-Dependent Mitochondria Apoptosis Plays an Essential Role in the Potential Protein Targets of DBDCT-Induced Hepatotoxicity as Revealed by Quantitative Proteomic Analyses
title Galectin-1-Dependent Mitochondria Apoptosis Plays an Essential Role in the Potential Protein Targets of DBDCT-Induced Hepatotoxicity as Revealed by Quantitative Proteomic Analyses
title_full Galectin-1-Dependent Mitochondria Apoptosis Plays an Essential Role in the Potential Protein Targets of DBDCT-Induced Hepatotoxicity as Revealed by Quantitative Proteomic Analyses
title_fullStr Galectin-1-Dependent Mitochondria Apoptosis Plays an Essential Role in the Potential Protein Targets of DBDCT-Induced Hepatotoxicity as Revealed by Quantitative Proteomic Analyses
title_full_unstemmed Galectin-1-Dependent Mitochondria Apoptosis Plays an Essential Role in the Potential Protein Targets of DBDCT-Induced Hepatotoxicity as Revealed by Quantitative Proteomic Analyses
title_short Galectin-1-Dependent Mitochondria Apoptosis Plays an Essential Role in the Potential Protein Targets of DBDCT-Induced Hepatotoxicity as Revealed by Quantitative Proteomic Analyses
title_sort galectin-1-dependent mitochondria apoptosis plays an essential role in the potential protein targets of dbdct-induced hepatotoxicity as revealed by quantitative proteomic analyses
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8824758/
https://www.ncbi.nlm.nih.gov/pubmed/35154294
http://dx.doi.org/10.1155/2022/5176300
work_keys_str_mv AT songjiayu galectin1dependentmitochondriaapoptosisplaysanessentialroleinthepotentialproteintargetsofdbdctinducedhepatotoxicityasrevealedbyquantitativeproteomicanalyses
AT renyuan galectin1dependentmitochondriaapoptosisplaysanessentialroleinthepotentialproteintargetsofdbdctinducedhepatotoxicityasrevealedbyquantitativeproteomicanalyses
AT liulihua galectin1dependentmitochondriaapoptosisplaysanessentialroleinthepotentialproteintargetsofdbdctinducedhepatotoxicityasrevealedbyquantitativeproteomicanalyses
AT wangyixin galectin1dependentmitochondriaapoptosisplaysanessentialroleinthepotentialproteintargetsofdbdctinducedhepatotoxicityasrevealedbyquantitativeproteomicanalyses
AT shichuandao galectin1dependentmitochondriaapoptosisplaysanessentialroleinthepotentialproteintargetsofdbdctinducedhepatotoxicityasrevealedbyquantitativeproteomicanalyses
AT jixiaoqing galectin1dependentmitochondriaapoptosisplaysanessentialroleinthepotentialproteintargetsofdbdctinducedhepatotoxicityasrevealedbyquantitativeproteomicanalyses
AT liyunlan galectin1dependentmitochondriaapoptosisplaysanessentialroleinthepotentialproteintargetsofdbdctinducedhepatotoxicityasrevealedbyquantitativeproteomicanalyses
AT liqingshan galectin1dependentmitochondriaapoptosisplaysanessentialroleinthepotentialproteintargetsofdbdctinducedhepatotoxicityasrevealedbyquantitativeproteomicanalyses