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Conversion of nicotine to nornicotine in Nicotiana tabacum is mediated by CYP82E4, a cytochrome P450 monooxygenase

机译:烟碱中烟碱向降烟碱的转化是由CYP82E4(一种细胞色素P450单加氧酶)介导的

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摘要

Nornicotine is a secondary tobacco alkaloid that is produced by the N-demethylation of nicotine. Nornicotine production and accumulation in tobacco are undesirable because nornicotine serves as the precursor in the synthesis of the well characterized carcinogen N′-nitrosonornicotine during the curing and processing of tobacco. Although nornicotine is typically a minor alkaloid in tobacco plants, in many tobacco populations a high percentage of individuals can be found that convert a substantial proportion of the nicotine to nornicotine during leaf senescence and curing. We used a microarray-based strategy to identify genes that are differentially regulated between closely related tobacco lines that accumulate either nicotine (nonconverters) or nornicotine (converters) as the predominant alkaloid in the cured leaf. These experiments led to the identification of a small number of closely related cytochrome P450 genes, designated the CYP82E2 family, whose collective transcript levels were consistently higher in converter versus nonconverter tobacco lines. RNA interference-induced silencing of the CYP82E2 gene family suppressed the synthesis of nornicotine in strong converter plants to levels similar to that observed in nonconverter individuals. Although each of the six identified members of the P450 family share >90% nucleotide sequence identity, sense expression of three selected isoforms revealed that only one (CYP82E4v1) was involved in the conversion of nicotine to nornicotine. Yeast expression analysis revealed that CYP82E4v1 functions as a nicotine demethylase. Identification of the gene(s) responsible for nicotine demethylation provides a potentially powerful tool toward efforts to minimize nornicotine levels, and thereby N′-nitrosonornicotine formation, in tobacco products.
机译:去甲烟碱是通过烟碱的N-去甲基化产生的次级烟草生物碱。烟草中去甲烟碱的产生和积累是不希望的,因为去甲烟碱在烟草的腌制和加工过程中用作特征充分的致癌物N'-亚硝基松香碱的合成前体。尽管降烟碱通常是烟草植物中的次要生物碱,但在许多烟草种群中,可以发现有很高百分比的个体在叶片衰老和固化过程中将大量尼古丁转化为降烟碱。我们使用了基于微阵列的策略来鉴定在烟叶中积累了作为主要生物碱的尼古丁(非转化子)或降烟碱(转化子)的密切相关的烟草系之间差异调节的基因。这些实验导致鉴定了少数紧密相关的细胞色素P450基因,称为CYP82E2家族,其转化子和非转化子烟株的集体转录水平始终较高。 CYP82E2基因家族的RNA干扰诱导的沉默将强转化植物中降烟碱的合成抑制到与未转化个体中相似的水平。尽管P450家族的六个已鉴定成员中的每一个都共享> 90%的核苷酸序列同一性,但三个选定同工型的有义表达显示只有一个(CYP82E4v1)参与了尼古丁向降烟碱的转化。酵母表达分析显示CYP82E4v1充当尼古丁脱甲基酶。鉴定负责尼古丁去甲基化的基因为努力减少烟草制品中降烟碱水平,从而最小化N'-硝基异烟碱的形成提供了潜在的强大工具。

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