首页> 外文期刊>Environmental research >Specific accumulation of CYP94A1 transcripts after exposure to gaseous benzaldehyde: Induction of lauric acid oo-hydroxylase activity in Vicia sativa exposed to atmospheric pollutants
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Specific accumulation of CYP94A1 transcripts after exposure to gaseous benzaldehyde: Induction of lauric acid oo-hydroxylase activity in Vicia sativa exposed to atmospheric pollutants

机译:暴露于气态苯甲醛后CYP94A1转录本的特定积累:暴露于大气污染物的豌豆中月桂酸oo-羟化酶活性的诱导

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摘要

The effects of air pollutants such as aldehydes, ozone, nitrogen dioxide and benzene on fatty acid o> hydroxylase activity in Vicia sativa microsomes have been investigated. Four days old etiolated V. sativa seedlings were exposed to different concentrations of selected pollutants for varying exposure times. Growing etiolated V. sativa seedlings in air containing the gaseous benzaldehyde (150 nM) led to an 8-fold enhancement of lauric acid co-hydroxylase activity in microsomes of treated plants compared to controls grown in pure air (96 + 10 versus 12 + 2 pmol/min/mg protein, respectively). The induction increased with increasing gas phase concentrations (10-1300 nM) and the maximum of activity was measured after 48 h of exposure. Northern blot analysis revealed that this induction occurred via transcriptional activation of the gene coding for CYP94A1. The absence of CYP94A2 and CYP94A3 transcription activation together with the missing effect on epoxide hydrolases activities indicate the specificity of CYP94A1 induction by benzaldehyde. Exposure to nitrogen dioxide, ozone and formaldehyde also stimulated lauric acid co-hydroxylases activity while exposure to benzene did not show any effect.
机译:研究了醛,臭氧,二氧化氮和苯等空气污染物对蚕豆微粒体中脂肪酸羟化酶活性的影响。将四天龄的黄化黄萎病幼苗暴露于不同浓度的选定污染物中,以改变暴露时间。与在纯空气中生长的对照相比,在含有气态苯甲醛(150 nM)的空气中生长黄化的苜蓿幼苗会使处理过的植物微粒体内的月桂酸共羟化酶活性提高8倍(96 + 10与12 + 2 pmol / min / mg蛋白)。诱导随着气相浓度(10-1300 nM)的增加而增加,并且在暴露48小时后测量到最大活性。 Northern印迹分析表明,这种诱导是通过编码CYP94A1的基因的转录激活而发生的。缺少CYP94A2和CYP94A3转录激活以及缺少对环氧水解酶活性的影响表明苯甲醛诱导CYP94A1的特异性。暴露于二氧化氮,臭氧和甲醛也会刺激月桂酸共羟基酶活性,而暴露于苯则没有任何作用。

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  • 来源
    《Environmental research》 |2011年第1期|p.37-44|共8页
  • 作者单位

    Institut de Biologie Moleculaire des Plantes, CNRS - Universite de Strasbourg IBMP-UPR 2357, Departement Reseaux Metaboliques, 28 rue Goethe, F-67083 Strasbourg Cedex, France ,Laboratoire des Materiaux, Surfaces et Precedes pour la Catalyse (LMSPC)/CNRS and Universite de Strasbourg, 25 rue Becquerel, 67087 Strasbourg Cedex 02, France;

    Laboratoire des Materiaux, Surfaces et Precedes pour la Catalyse (LMSPC)/CNRS and Universite de Strasbourg, 25 rue Becquerel, 67087 Strasbourg Cedex 02, France;

    Institut de Biologie Moleculaire des Plantes, CNRS - Universite de Strasbourg IBMP-UPR 2357, Departement Reseaux Metaboliques, 28 rue Goethe, F-67083 Strasbourg Cedex, France ,Laboratoire des Materiaux, Surfaces et Precedes pour la Catalyse (LMSPC)/CNRS and Universite de Strasbourg, 25 rue Becquerel, 67087 Strasbourg Cedex 02, France;

    Institut de Biologie Moleculaire des Plantes, CNRS - Universite de Strasbourg IBMP-UPR 2357, Departement Reseaux Metaboliques, 28 rue Goethe, F-67083 Strasbourg Cedex, France;

    Institute of Cellular and Molecular Botany (1ZMB), Department of Ecophysiology, University of Bonn, Kirschalle J, D-53J J5 Bonn, Germany;

    Institute of Cellular and Molecular Botany (1ZMB), Department of Ecophysiology, University of Bonn, Kirschalle J, D-53J J5 Bonn, Germany;

    Institut de Biologie Moleculaire des Plantes, CNRS - Universite de Strasbourg IBMP-UPR 2357, Departement Reseaux Metaboliques, 28 rue Goethe, F-67083 Strasbourg Cedex, France ,IBMP-CNRS UPR 2357, Institut de Botanique, 28 rue Goethe, F-67083 Strasbourg Cedex, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    plant; cytochrome p450; ozone; induction; pollutant; atmosphere;

    机译:厂;细胞色素p450;臭氧;感应;污染物大气层;

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