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暴露于苯并[a]芘、滴滴涕及其混合物的雄性翡翠贻贝性腺的毒性作用:潜在机制的代谢组学和蛋白质组学研究

Toxic effects of male Perna viridis gonad exposed to BaP, DDT and their mixture: A metabolomic and proteomic study of the underlying mechanism.

作者信息

Song Qinqin, Zheng Pengfei, Qiu Liguo, Jiang Xiu, Zhao Hongwei, Zhou Hailong, Han Qian, Diao Xiaoping

机构信息

College of Agriculture, Hainan University, Haikou 570228, China.

College of Environment and Plant Protection, Hainan University, Haikou 570228, China.

出版信息

Toxicol Lett. 2016 Jan 5;240(1):185-95. doi: 10.1016/j.toxlet.2015.10.031. Epub 2015 Nov 4.

Abstract

Benzo(a)pyrene and dichlorodiphenyltrichloroethane are typical persistent organic pollutants, and also the widespread environmental estrogens with known toxicity towards green mussels Perna viridis. In this study, the toxicological effects of BaP and DDT and their mixture were assessed in green mussel gonads using proteomic and metabolomic approaches. Metabolomics by NMR spectroscopy revealed that BaP did not show obvious metabolite changes in the gonad of male green mussel. DDT mainly caused some disturbance of osmotic regulation and energy metabolism by changing BCAAs, alanine, threonine, arginine, etc., unknown metabolite (3.53 ppm), glycine, homarine and ATP at different levels. However, the mixture of BaP and DDT mainly caused some disturbance in osmotic regulation and energy metabolism by differentially altering branched chain amino acids, glutamate, alanine, arginine, unknown metabolite (3.53 ppm), glycine, 4-aminobutyrate, dimethylglycine, homarine and ATP. The results suggest that DDT alone may cause most of metabolites changes in the mixture exposed male mussel gonad, and the results also show that the male P. viridis gonad was more sensitive to DDT than BaP exposures. Proteomic study showed that BaP, DDT and their mixture may have different modes of action. Proteomic responses revealed that BaP induced signal transduction, oxidative stress, spermatogenesis, etc. in the male green mussel gonad; whereas DDT exposure altered proteins that were associated with signal transduction, oxidative stress, cytoskeleton and cell structure, cellular organization, energy metabolism, etc. However, the mixture of BaP and DDT affected proteins related to cytoskeleton and cell structure, oxidative stress, cellular organization, etc. This research demonstrated that metabolomic and proteomic approaches could better elucidate the underlying mechanism of environmental pollutants gonad toxicity.

摘要

苯并(a)芘和滴滴涕是典型的持久性有机污染物,也是对翡翠贻贝具有已知毒性的广泛存在的环境雌激素。在本研究中,采用蛋白质组学和代谢组学方法评估了苯并(a)芘和滴滴涕及其混合物对翡翠贻贝性腺的毒理学效应。核磁共振光谱代谢组学显示,苯并(a)芘在雄性翡翠贻贝性腺中未表现出明显的代谢物变化。滴滴涕主要通过不同程度地改变支链氨基酸、丙氨酸、苏氨酸、精氨酸等、未知代谢物(3.53 ppm)、甘氨酸、高甜菜碱和三磷酸腺苷,对渗透调节和能量代谢造成一些干扰。然而,苯并(a)芘和滴滴涕的混合物主要通过差异改变支链氨基酸、谷氨酸、丙氨酸、精氨酸、未知代谢物(3.53 ppm)、甘氨酸、4-氨基丁酸、二甲基甘氨酸、高甜菜碱和三磷酸腺苷,对渗透调节和能量代谢造成一些干扰。结果表明,单独的滴滴涕可能导致混合暴露雄性贻贝性腺中的大多数代谢物变化,结果还表明,雄性翡翠贻贝性腺对滴滴涕的敏感性高于苯并(a)芘暴露。蛋白质组学研究表明,苯并(a)芘、滴滴涕及其混合物可能具有不同的作用模式。蛋白质组学反应显示,苯并(a)芘在雄性翡翠贻贝性腺中诱导信号转导、氧化应激、精子发生等;而滴滴涕暴露改变了与信号转导、氧化应激、细胞骨架和细胞结构、细胞组织、能量代谢等相关的蛋白质。然而,苯并(a)芘和滴滴涕的混合物影响了与细胞骨架和细胞结构、氧化应激、细胞组织等相关的蛋白质。本研究表明,代谢组学和蛋白质组学方法可以更好地阐明环境污染物性腺毒性的潜在机制。

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