Amantadine Toxicity in Apostichopus japonicus Revealed by Proteomics

Author:

Zhao Junqiang12,Chen Jianqiang1,Tian Xiuhui1,Jiang Lisheng1,Cui Qingkui1,Sun Yanqing1,Wu Ningning3,Liu Ge4,Ding Yuzhu1,Wang Jing1,Liu Yongchun1,Han Dianfeng1,Xu Yingjiang1

Affiliation:

1. Yantai Key Laboratory of Quality and Safety Control and Deep Processing of Marine Food, Shandong Key Laboratory of Marine Ecological Restoration, Shandong Marine Resource and Environment Research Institute, Yantai 264006, China

2. School of Food, Shanghai Ocean University, Shanghai 200120, China

3. Qingdao Ocean Management Security Center, Qingdao 266000, China

4. Laizhou Marine Development and Fisheries Service Center, Yantai 261499, China

Abstract

Amantadine exposure can alter biological processes in sea cucumbers, which are an economically important seafood in China. In this study, amantadine toxicity in Apostichopus japonicus was analyzed by oxidative stress and histopathological methods. Quantitative tandem mass tag labeling was used to examine changes in protein contents and metabolic pathways in A. japonicus intestinal tissues after exposure to 100 µg/L amantadine for 96 h. Catalase activity significantly increased from days 1 to 3 of exposure, but it decreased on day 4. Superoxide dismutase and glutathione activities were inhibited throughout the exposure period. Malondialdehyde contents increased on days 1 and 4 but decreased on days 2 and 3. Proteomics analysis revealed 111 differentially expressed proteins in the intestines of A. japonicus after amantadine exposure compared with the control group. An analysis of the involved metabolic pathways showed that the glycolytic and glycogenic pathways may have increased energy production and conversion in A. japonicus after amantadine exposure. The NF-κB, TNF, and IL-17 pathways were likely induced by amantadine exposure, thereby activating NF-κB and triggering intestinal inflammation and apoptosis. Amino acid metabolism analysis showed that the leucine and isoleucine degradation pathways and the phenylalanine metabolic pathway inhibited protein synthesis and growth in A. japonicus. This study investigated the regulatory response mechanisms in A. japonicus intestinal tissues after exposure to amantadine, providing a theoretical basis for further research on amantadine toxicity.

Funder

Fundamental Research Projects of Science & Technology Innovation and Development Plan in Yantai City

Modern Agro-industry Technology Research System in Shandong Province

the National Key R&D Program of China

Publisher

MDPI AG

Subject

Chemical Health and Safety,Health, Toxicology and Mutagenesis,Toxicology

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