The Securinega alkaloids.

Q1 Biochemistry, Genetics and Molecular Biology
Eqor Chirkin, William Atkatlian, François-Hugues Porée
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引用次数: 25

Abstract

Securinega alkaloids represent a family of plant secondary metabolites known for 50 years. Securinine (1), the most abundant and studied alkaloid of this series was isolated by Russian researchers in 1956. In the following years, French and Japanese scientists reported other Securinega compounds and extensive work was done to elucidate their intriguing structures. The homogeneity of this family relies mainly on its tetracyclic chemical backbone, which features a butenolide moiety (cycle D) and an azabicyclo[3.2.1]octane ring system (rings B and C). Interestingly, after a period of latency of 20 years, the Securinega topic reemerged as a prolific source of new natural structures and to date more than 50 compounds have been identified and characterized. The oligomeric subgroup gathering dimeric, trimeric, and tetrameric units is of particular interest. The unprecedented structure of the Securinega alkaloids was the subject of extensive synthetic efforts culminating in several efficient and elegant total syntheses. The botanical distribution of these alkaloids seems limited to the Securinega, Flueggea, Margaritaria, and Breynia genera (Phyllanthaceae). However, only a limited number of plant species have been considered for their alkaloid contents, and additional phytochemical as well as genetic studies are needed. Concerning the biosynthesis, experiments carried out with radiolabelled aminoacids allowed to identify lysine and tyrosine as the precursors of the piperidine ring A and the CD rings of securinine (1), respectively. Besides, plausible biosynthetic pathways were proposed for virosaine A (38) and B (39), flueggine A (46), and also the different oligomers flueggenine A-D (48-51), fluevirosinine A (56), and flueggedine (20). The case of nirurine (45) and secu'amamine (37) remains elusive and additional studies seem necessary to understand their mode of production. The scope of biological of activities of the Securinega alkaloids was mainly centered on the CNS activity of securinine (1), although the exact mechanism of action remained in part unknown. Nevertheless, for its stimulant and antispasmodic effects securinine nitrate was marketed as a drug in the USSR until the early 1990s. Moreover, securinine (1) and several other Securinega alkaloids recently demonstrated promising anticancer properties. In particular securinine (1) demonstrated markedly benefits in the treatment of acute myeloid leukemia.

Securinega生物碱。
麻苣苔生物碱是一个已知50年的植物次生代谢产物家族。Securinine(1)是该系列生物碱中含量最多、研究最多的一种,1956年由俄罗斯研究人员分离得到。在接下来的几年里,法国和日本科学家报告了其他Securinega化合物,并做了大量的工作来阐明其有趣的结构。该家族的同质性主要依赖于其四环化学主链,其特征是丁烯内酯部分(环D)和氮杂环[3.2.1]辛烷环系统(环B和环C)。有趣的是,经过20年的沉寂,Securinega主题重新出现,成为新的天然结构的丰富来源,迄今为止已鉴定和表征了50多种化合物。聚集二聚体、三聚体和四聚体单位的低聚亚群是特别有趣的。该生物碱的史无前例的结构是广泛的合成努力的主题,最终在几个有效和优雅的全合成。这些生物碱的植物分布似乎仅限于凤尾草属、凤尾草属、玛格丽塔属和布雷尼亚属。然而,只考虑了有限数量的植物物种的生物碱含量,还需要进行更多的植物化学和遗传研究。在生物合成方面,用放射性标记的氨基酸进行的实验表明,赖氨酸和酪氨酸分别是哌啶环A和吡啶环CD的前体(1)。此外,还提出了似是而非的病毒碱A(38)和B(39)、氟蛋氨酸A(46)以及不同的低聚物氟蛋氨酸A- d(48-51)、氟蛋氨酸A(56)和氟蛋氨酸(20)的生物合成途径。nirurine(45)和secu’amamine(37)的情况仍然难以捉摸,似乎需要进一步的研究来了解它们的生产方式。其生物活性范围主要集中在麻碱的中枢神经系统活性(1),但其确切的作用机制尚不清楚。然而,由于其兴奋剂和抗痉挛作用,直到20世纪90年代初,硝酸安可宁在苏联作为药物销售。此外,securinine(1)和其他几种Securinega生物碱最近显示出有希望的抗癌特性。特别是securinine(1)在治疗急性髓系白血病中表现出明显的益处。
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来源期刊
Alkaloids: Chemistry and Biology
Alkaloids: Chemistry and Biology Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
13.70
自引率
0.00%
发文量
21
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