BBL酶在烟叶中吡啶类生物碱的生物合成中表现出对映特异性。

IF 3.2 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Phytochemistry Pub Date : 2024-12-16 DOI:10.1016/j.phytochem.2024.114363
Zachary Allen , Sheri P. Kernodle , Rui Shi , Hai Liu , Michael P. Timko , Tyler Steede , Ralph E. Dewey , Ramsey S. Lewis
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引用次数: 0

摘要

植物可以以光学纯形式积累次生代谢物,偶尔也可以作为对映体混合物。有趣的是,同一分子的对映体可以赋予不同的生物活性。在烟草(Nicotiana tabacum L.)中,吡啶类生物碱尼古丁、去尼古丁、阿那他碱和阿那他碱天然存在于(R)-或(S)-对映体的标度混合物中,其中(S)-同型型占主导地位。烟草生物碱对映体积累的机制在很大程度上仍然未知。在烟草基因型中,尼古丁去甲基化酶(NND)和小檗碱桥样酶(BBL)的三个基因编码发生了诱导的有害突变,这些基因编码在尼古丁、阿那他滨和阿那他碱生物合成途径的末端起作用。数据表明,(R)-尼古丁自然产生的水平相当可观,但由于NND酶的优先去甲基化,仅观察到少量。数据进一步表明,BBL-a和BBL-b优先参与(S)-生物碱对映体的生物合成,而BBL-c优先参与(R)-对映体的生物合成。基因复制后的遗传分化在烟草鳞片生物碱积累的进化过程中发挥了重要作用。通过突变育种和转基因过表达相结合,产生了烟草基因型,其中优势生物碱对映体从(S)-型反转到(R)-型。这些结果为烟草生物碱积累的遗传调控和植物次生代谢物鳞状混合物形成机制提供了线索。
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BBL enzymes exhibit enantiospecific preferences in the biosynthesis of pyridine alkaloids in Nicotiana tabacum L.
Plant species can accumulate secondary metabolites in optically pure form or, occasionally, as enantiomeric mixtures. Interestingly, enantiomers of the same molecule can confer different biological activities. In tobacco (Nicotiana tabacum L.), the pyridine alkaloids nicotine, nornicotine, anatabine, and anabasine naturally exist as scalemic mixtures of (R)- or (S)-enantiomers, with the (S)-isoforms predominating. The mechanisms by which tobacco alkaloid enantiomers accumulate remain largely unknown. Experiments were carried out involving tobacco genotypes possessing induced deleterious mutations in three genes coding for nicotine demethylase (NND) enzymes and three genes coding for Berberine Bridge Like (BBL) enzymes that act near the end of the nicotine, anatabine, and anabasine biosynthetic pathways. Data indicate that (R)-nicotine is naturally produced at appreciable levels but is observed in only small amounts due to preferential demethylation by NND enzymes. Data further suggest that BBL-a and BBL-b are preferentially involved in the biosynthesis of (S)-alkaloid enantiomers, while BBL-c is preferentially involved in the biosynthesis of (R)-enantiomers. Gene duplication followed by genetic divergence thus played a role in the evolution of scalemic alkaloid accumulation in tobacco. Through a combination of mutation breeding and transgene overexpression, tobacco genotypes were generated in which the predominant alkaloid enantiomers were reversed from the (S)- to the (R)-isoforms. These results shed light on the genetic control of alkaloid accumulation in N. tabacum and on mechanisms of scalemic mixture formation of secondary metabolites in plants.
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来源期刊
Phytochemistry
Phytochemistry 生物-植物科学
CiteScore
6.40
自引率
7.90%
发文量
443
审稿时长
39 days
期刊介绍: Phytochemistry is a leading international journal publishing studies of plant chemistry, biochemistry, molecular biology and genetics, structure and bioactivities of phytochemicals, including ''-omics'' and bioinformatics/computational biology approaches. Phytochemistry is a primary source for papers dealing with phytochemicals, especially reports concerning their biosynthesis, regulation, and biological properties both in planta and as bioactive principles. Articles are published online as soon as possible as Articles-in-Press and in 12 volumes per year. Occasional topic-focussed special issues are published composed of papers from invited authors.
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