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苯酚对摇蚊幼虫细胞色素P450酶代谢活性和转录谱的影响。

Effects of phenol on metabolic activities and transcription profiles of cytochrome P450 enzymes in Chironomus kiinensis larvae.

作者信息

Cao C W, Sun L L, Niu F, Liu P, Chu D, Wang Z Y

机构信息

School of Forestry,Northeast Forestry University,Harbin,China.

出版信息

Bull Entomol Res. 2016 Feb;106(1):73-80. doi: 10.1017/S0007485315000826. Epub 2015 Oct 23.

Abstract

Phenol, also known as carbolic acid or phenic acid, is a priority pollutant in aquatic ecosystems. The present study has investigated metabolic activities and transcription profiles of cytochrome P450 enzymes in Chironomus kiinensis under phenol stress. Exposure of C. kiinensis larvae to three sublethal doses of phenol (1, 10 and 100 µM) inhibited cytochrome P450 enzyme activity during the 96 h exposure period. The P450 activity measured after the 24 h exposure to phenol stress could be used to assess the level (low or high) of phenol contamination in the environment. To investigate the potential of cytochrome P450 genes as molecular biomarkers to monitor phenol contamination, the cDNA of ten CYP6 genes from the transcriptome of C. kiinensis were identified and sequenced. The open reading frames of the CYP6 genes ranged from 1266 to 1587 bp, encoding deduced polypeptides composed of between 421 and 528 amino acids, with predicted molecular masses from 49.01 to 61.94 kDa and isoelectric points (PI) from 6.01 to 8.89. Among the CYP6 genes, the mRNA expression levels of the CYP6EW3, CYP6EV9, CYP6FV1 and CYP6FV2 genes significantly altered in response to phenol exposure; therefore, these genes could potentially serve as biomarkers in the environment. This study shows that P450 activity combined with one or multiple CYP6 genes could be used to monitor phenol pollution.

摘要

苯酚,也被称为石炭酸或苯基酸,是水生生态系统中的一种优先污染物。本研究调查了苯酚胁迫下中华摇蚊细胞色素P450酶的代谢活性和转录谱。将中华摇蚊幼虫暴露于三种亚致死剂量的苯酚(1、10和100 μM)下,在96小时的暴露期内抑制了细胞色素P450酶的活性。暴露于苯酚胁迫24小时后测得的P450活性可用于评估环境中苯酚污染的水平(低或高)。为了研究细胞色素P450基因作为监测苯酚污染的分子生物标志物的潜力,从中华摇蚊转录组中鉴定并测序了10个CYP6基因的cDNA。CYP6基因的开放阅读框范围为1266至1587 bp,编码由421至528个氨基酸组成的推导多肽,预测分子量为49.01至61.94 kDa,等电点(PI)为6.01至8.89。在CYP6基因中,CYP6EW3、CYP6EV9、CYP6FV1和CYP6FV2基因的mRNA表达水平在苯酚暴露后发生了显著变化;因此,这些基因有可能作为环境中的生物标志物。本研究表明,P450活性与一个或多个CYP6基因相结合可用于监测苯酚污染。

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