黑曲霉苯甲酸对羟化酶细胞色素P450系统的表达调控。

J M van den Brink, P J Punt, R F van Gorcom, C A van den Hondel
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引用次数: 31

摘要

细胞色素P450酶系统遍布自然界,参与许多不同的,通常是复杂的生物转化。在丝状真菌黑曲霉的内质网中存在一个细胞色素P450酶系统,它能够对苯甲酸酯进行羟基化。编码该系统组分的两个基因,即编码苯甲酸酯对羟化酶(bphA)的细胞色素P450基因和编码细胞色素P450还原酶(cprA)的基因,可以被苯甲酸酯诱导表达。BPH系统被用作模型系统来研究导致真核细胞色素P450酶系统的两个组成部分共同调节的机制。通过对cprA和bphA转录控制区的缺失分析,鉴定出了一个参与苯甲酸酯诱导基因表达的区域。cprA苯甲酸酯反应区的功能能力被直接证明,通过克隆该片段的上游组成表达的迷你启动子和分析杂交转录控制区在lacZ报告系统中的表达。对cprA基因表达的进一步分析显示,在蛋白水平诱导(约4倍)和转录水平诱导(> 20倍)之间存在明显的数量差异。苯甲酸盐诱导后观察到的大部分转录本(cprAbeta)大于组成表达的cprAalpha转录本。cpralpha和cprbeta转录本的大小差异是由不同的启动子使用引起的。由于较长的cprAbeta转录本携带较小的uORF,我们提出转录后对CPR表达的调控是蛋白质和转录水平诱导程度差异的基础。我们的研究结果表明,CPR表达的调控特别复杂,涉及调控启动子元件、差异启动子的使用和转录后水平的调控。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regulation of expression of the Aspergillus niger benzoate para-hydroxylase cytochrome P450 system.

Cytochrome P450 enzyme systems are found throughout nature and are involved in many different, often complex, bioconversions. In the endoplasmic reticulum of the filamentous fungus Aspergillus niger a cytochrome P450 enzyme system is present that is capable of the para-hydroxylation of benzoate. The expression of the two genes encoding the components of this system, the cytochrome P450 gene encoding benzoate para-hydroxylase (bphA) and the gene encoding cytochrome P450 reductase (cprA), is inducible by benzoate. The BPH system was used as a model system to study the mechanisms that result in co-regulation of both components of an eukaryote cytochrome P450 enzyme system. Deletion analysis of the transcription control regions of cprA and bphA resulted in the identification of a region that was involved in benzoate induction of gene expression. The functional competence of the cprA Benzoate Responsive Region thus defined was demonstrated directly by cloning this fragment upstream of a constitutively expressed mini-promoter and analysing expression of the hybrid transcription control region in a lacZ reporter system. Further analysis of cprA gene expression revealed a clear quantitative discrepancy between induction at the protein level (approximately 4-fold) and at the transcription level (> 20-fold). The majority of the transcripts observed after benzoate induction (cprAbeta) were larger then the constitutively expressed cprAalpha transcript. The difference in size between the cprAalpha and cprAbeta transcript is caused by differential promoter use. As the longer cprAbeta transcript carries a small uORF we propose that post-transcriptional regulation of CPR expression underlies the discrepancy in the degree of induction at the protein and transcriptional level. Our results show that regulation of CPR expression is particularly complex, involving regulatory promoter elements, differential promoter use and regulation at the post-transcriptional level.

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