Protective Effect of Dictyophora Polysaccharides on Sodium Arsenite-Induced Hepatotoxicity: A Proteomics Study

The purpose of this study is to understand the mechanism of sodium arsenite (NaAsO2)-induced apoptosis of L-02 human hepatic cells, and how Dictyophora polysaccharide (DIP) protects L-02 cells from arsenic-induced apoptosis. The results revealed that DIP pretreatment inhibited NaAsO2 induced L-02 ce...

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Autores principales: Ting Hu, Liming Shen, Qun Huang, Changyan Wu, Huajie Zhang, Qibing Zeng, Guoze Wang, Shaofeng Wei, Shuling Zhang, Jun Zhang, Naseer Ullah Khan, Xiangchun Shen, Peng Luo
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Publicado: Frontiers Media S.A. 2021
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Acceso en línea:https://doaj.org/article/9f0ec1ee6053433baae509669a190c4a
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spelling oai:doaj.org-article:9f0ec1ee6053433baae509669a190c4a2021-12-01T05:15:02ZProtective Effect of Dictyophora Polysaccharides on Sodium Arsenite-Induced Hepatotoxicity: A Proteomics Study1663-981210.3389/fphar.2021.749035https://doaj.org/article/9f0ec1ee6053433baae509669a190c4a2021-11-01T00:00:00Zhttps://www.frontiersin.org/articles/10.3389/fphar.2021.749035/fullhttps://doaj.org/toc/1663-9812The purpose of this study is to understand the mechanism of sodium arsenite (NaAsO2)-induced apoptosis of L-02 human hepatic cells, and how Dictyophora polysaccharide (DIP) protects L-02 cells from arsenic-induced apoptosis. The results revealed that DIP pretreatment inhibited NaAsO2 induced L-02 cells apoptosis by increasing anti-apoptotic Bcl-2 expression and decreasing pro-apoptotic Bax expression. Proteomic analysis showed that arsenic treatment disrupted the expression of metabolism and apoptosis associated proteins, including ribosomal proteins (RPs). After pretreatment with DIP, the expression levels of these proteins were reversed or restored. For the first time, it was observed that the significant decrease of cytoplasmic RPs and the increase of mitochondrial RPs were related to human normal cell apoptosis induced by arsenic. This is also the first report that the protective effect of DIP on cells was related to RPs. The results highlight the relationship between RPs and apoptosis, as well as the relationship between RPs and DIP attenuating arsenic-induced apoptosis.Ting HuTing HuTing HuLiming ShenQun HuangQun HuangChangyan WuHuajie ZhangQibing ZengQibing ZengQibing ZengGuoze WangGuoze WangShaofeng WeiShaofeng WeiShuling ZhangJun ZhangNaseer Ullah KhanXiangchun ShenPeng LuoPeng LuoPeng LuoPeng LuoFrontiers Media S.A.articledictyophora polysaccharidesNaAsO2apoptosishepatotoxicityproteomicsTherapeutics. PharmacologyRM1-950ENFrontiers in Pharmacology, Vol 12 (2021)
institution DOAJ
collection DOAJ
language EN
topic dictyophora polysaccharides
NaAsO2
apoptosis
hepatotoxicity
proteomics
Therapeutics. Pharmacology
RM1-950
spellingShingle dictyophora polysaccharides
NaAsO2
apoptosis
hepatotoxicity
proteomics
Therapeutics. Pharmacology
RM1-950
Ting Hu
Ting Hu
Ting Hu
Liming Shen
Qun Huang
Qun Huang
Changyan Wu
Huajie Zhang
Qibing Zeng
Qibing Zeng
Qibing Zeng
Guoze Wang
Guoze Wang
Shaofeng Wei
Shaofeng Wei
Shuling Zhang
Jun Zhang
Naseer Ullah Khan
Xiangchun Shen
Peng Luo
Peng Luo
Peng Luo
Peng Luo
Protective Effect of Dictyophora Polysaccharides on Sodium Arsenite-Induced Hepatotoxicity: A Proteomics Study
description The purpose of this study is to understand the mechanism of sodium arsenite (NaAsO2)-induced apoptosis of L-02 human hepatic cells, and how Dictyophora polysaccharide (DIP) protects L-02 cells from arsenic-induced apoptosis. The results revealed that DIP pretreatment inhibited NaAsO2 induced L-02 cells apoptosis by increasing anti-apoptotic Bcl-2 expression and decreasing pro-apoptotic Bax expression. Proteomic analysis showed that arsenic treatment disrupted the expression of metabolism and apoptosis associated proteins, including ribosomal proteins (RPs). After pretreatment with DIP, the expression levels of these proteins were reversed or restored. For the first time, it was observed that the significant decrease of cytoplasmic RPs and the increase of mitochondrial RPs were related to human normal cell apoptosis induced by arsenic. This is also the first report that the protective effect of DIP on cells was related to RPs. The results highlight the relationship between RPs and apoptosis, as well as the relationship between RPs and DIP attenuating arsenic-induced apoptosis.
format article
author Ting Hu
Ting Hu
Ting Hu
Liming Shen
Qun Huang
Qun Huang
Changyan Wu
Huajie Zhang
Qibing Zeng
Qibing Zeng
Qibing Zeng
Guoze Wang
Guoze Wang
Shaofeng Wei
Shaofeng Wei
Shuling Zhang
Jun Zhang
Naseer Ullah Khan
Xiangchun Shen
Peng Luo
Peng Luo
Peng Luo
Peng Luo
author_facet Ting Hu
Ting Hu
Ting Hu
Liming Shen
Qun Huang
Qun Huang
Changyan Wu
Huajie Zhang
Qibing Zeng
Qibing Zeng
Qibing Zeng
Guoze Wang
Guoze Wang
Shaofeng Wei
Shaofeng Wei
Shuling Zhang
Jun Zhang
Naseer Ullah Khan
Xiangchun Shen
Peng Luo
Peng Luo
Peng Luo
Peng Luo
author_sort Ting Hu
title Protective Effect of Dictyophora Polysaccharides on Sodium Arsenite-Induced Hepatotoxicity: A Proteomics Study
title_short Protective Effect of Dictyophora Polysaccharides on Sodium Arsenite-Induced Hepatotoxicity: A Proteomics Study
title_full Protective Effect of Dictyophora Polysaccharides on Sodium Arsenite-Induced Hepatotoxicity: A Proteomics Study
title_fullStr Protective Effect of Dictyophora Polysaccharides on Sodium Arsenite-Induced Hepatotoxicity: A Proteomics Study
title_full_unstemmed Protective Effect of Dictyophora Polysaccharides on Sodium Arsenite-Induced Hepatotoxicity: A Proteomics Study
title_sort protective effect of dictyophora polysaccharides on sodium arsenite-induced hepatotoxicity: a proteomics study
publisher Frontiers Media S.A.
publishDate 2021
url https://doaj.org/article/9f0ec1ee6053433baae509669a190c4a
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