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基于 DIGE 的 B[a]P 暴露肝癌细胞的蛋白质表达分析揭示了一种复杂的应激反应,包括在毒性和亚急性浓度下氧化应激、细胞周期控制和细胞骨架运动的改变。

DIGE-based protein expression analysis of B[a]P-exposed hepatoma cells reveals a complex stress response including alterations in oxidative stress, cell cycle control, and cytoskeleton motility at toxic and subacute concentrations.

机构信息

Department of Proteomics, UFZ, Helmholtz-Centre for Environmental Research, Leipzig, Germany.

出版信息

J Proteome Res. 2011 Feb 4;10(2):379-93. doi: 10.1021/pr100723d. Epub 2010 Dec 21.

Abstract

Although the effects of high concentrations of the carcinogen benzo[a]pyrene (B[a]P) have been studied extensively, little is known about its effects at subacute toxic concentrations, which are typical for environmental pollutants. We exposed murine Hepa1c1c7 cells to a toxic concentration (5 μM) and a subacute concentration (50 nM) of B[a]P over a period of 2-24 h to differentiate between acute and pseudochronic effects and conducted a time-course analysis of B[a]P-influenced protein expression by DIGE. In total, a set of 120 spots were found to be significantly altered due to B[a]P exposure of which 112 were subsequently identified by mass spectrometry. Clustering and principal component analysis were conducted to identify sets of proteins responding in a concerted manner to the exposure. Our results indicate an immediate response to the contaminant at the protein level and demonstrate that B[a]P exposure alters the cellular response by disturbing proteins involved in oxidative stress, cell cycle regulation, apoptosis, and cytoskeleton organization. Furthermore, network analysis of protein-protein interactions revealed a complex network of interacting, B[a]P-regulated proteins mostly belonging to the cytoskeleton organization and several signal transduction pathways.

摘要

虽然高浓度致癌物质苯并[a]芘(B[a]P)的影响已经得到了广泛的研究,但对于其在亚急性毒性浓度下的影响知之甚少,而亚急性毒性浓度是环境污染物的典型浓度。我们将小鼠 Hepa1c1c7 细胞暴露于有毒浓度(5 μM)和亚急性浓度(50 nM)的 B[a]P 中 2-24 小时,以区分急性和拟慢性效应,并通过 DIGE 进行 B[a]P 影响的蛋白质表达的时间过程分析。总共发现 120 个斑点由于 B[a]P 的暴露而发生显著改变,其中 112 个斑点随后通过质谱鉴定。进行聚类和主成分分析以鉴定协同响应暴露的蛋白质组。我们的结果表明在蛋白质水平上对污染物的即时反应,并表明 B[a]P 暴露通过干扰参与氧化应激、细胞周期调节、细胞凋亡和细胞骨架组织的蛋白质来改变细胞反应。此外,蛋白质-蛋白质相互作用的网络分析揭示了一个复杂的相互作用网络,B[a]P 调节的蛋白质主要属于细胞骨架组织和几个信号转导途径。

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