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菊芋中一种异生素诱导型7-乙氧基香豆素O-脱乙基酶CYP76B1在酵母中的分子克隆与功能表达

Molecular cloning and functional expression in yeast of CYP76B1, a xenobiotic-inducible 7-ethoxycoumarin O-de-ethylase from Helianthus tuberosus.

作者信息

Batard Y, LeRet M, Schalk M, Robineau T, Durst F, Werck-Reichhart D

机构信息

Département d'Enzymologie Cellulaire et Moléculaire, CNRS, Strasbourg, France.

出版信息

Plant J. 1998 Apr;14(1):111-20. doi: 10.1046/j.1365-313x.1998.00099.x.

Abstract

In order to obtain plant markers of chemical stress and possible tools for the bio-monitoring of pollution, a protein purification/PCR approach was used to isolate cDNAs of xenobiotic-inducible P450 oxygenases. O-dealkylation of 7-ethoxycoumarin is catalysed in Helianthus tuberosus by cytochromes P450 strongly inducible by a wide range of xenobiotics. Therefore, a 7-ethoxycoumarin O-de-ethylase (ECOD) was purified from induced tuber tissues (Batard et al., 1995). A primer designed from an internal peptide sequence, but also corresponding to a conserved P450 haem-binding region, led to the generation of a gene-specific probe corresponding to a P450 strongly inducible by aminopyrine. Two partial and 98% identical coding sequences were isolated from a cDNA library prepared from aminopyrine-induced tuber. A full-length cDNA was reconstituted by 5'-RACE elongation. The protein deduced from this full-length sequence, with 41.1% amino acid identity to CYP76A1 and high phylogenetic relationship to other CYP76s, was termed CYP76B1. CYP76B1 was expressed in yeast. Microsomes from the transformed yeast catalysed the NADPH-dependent O-dealkylation of 7-ethoxycoumarin. However, protein sequence as well as enzymological data indicated that CYP76B1 does not correspond to the purified ECOD protein. These results confirm previous data and demonstrate that several P450s in H. tuberosus are capable of actively catalysing the O-de-ethylation of ethoxycoumarin. Determination of the steady-state level of CYP76B1 transcripts after slicing tuber tissues and ageing them in water, alone or in the presence of various chemicals, showed that the expression of this P450 was not responsive to mechanical stress, but was strongly induced by chemical treatments. CYP76B1 thus appears to be a good potential marker of chemical stress and of environmental pollution.

摘要

为了获得化学胁迫的植物标志物以及污染生物监测的可能工具,采用蛋白质纯化/聚合酶链式反应(PCR)方法分离异生物质诱导型细胞色素P450加氧酶的互补DNA(cDNA)。在菊芋中,7-乙氧基香豆素的O-脱烷基化反应由细胞色素P450催化,多种异生物质可强烈诱导其表达。因此,从诱导的块茎组织中纯化出了一种7-乙氧基香豆素O-脱乙基酶(ECOD)(巴塔尔德等人,1995年)。根据内部肽段序列设计的引物,同时该序列也对应保守的细胞色素P450血红素结合区域,由此产生了一个与氨基比林强烈诱导的细胞色素P450对应的基因特异性探针。从氨基比林诱导的块茎制备的cDNA文库中分离出两个部分编码序列,它们有98%的同一性。通过5'-RACE延伸重建了全长cDNA。从该全长序列推导的蛋白质与CYP76A1有41.1%的氨基酸同一性,与其他CYP76s有高度的系统发育关系,被命名为CYP76B1。CYP76B1在酵母中表达。来自转化酵母的微粒体催化了NADPH依赖的7-乙氧基香豆素的O-脱烷基化反应。然而,蛋白质序列以及酶学数据表明CYP76B1与纯化的ECOD蛋白不对应。这些结果证实了先前的数据,并表明菊芋中的几种细胞色素P450能够积极催化乙氧基香豆素的O-脱乙基反应。对块茎组织切片并在水中单独或在各种化学物质存在下老化后,测定CYP76B1转录本的稳态水平,结果表明该细胞色素P450的表达对机械胁迫无反应,但受到化学处理的强烈诱导。因此,CYP76B1似乎是化学胁迫和环境污染的一个良好潜在标志物。

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