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Bioactive secondary metabolites from symbiotic marine dinoflagellates: Symbiodinolide and durinskiols

机译:来自共生海洋鞭毛藻的生物活性次生代谢产物:共生生物素和杜林斯基醇

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摘要

Symbiotic relationships play critical roles in marine ecosystems. Among symbionts, marine dinoflagellates have attracted the attention of natural products chemists, biologists, and ecologists, since they are rich sources of unique bioactive secondary metabolites. The polyol compound symbiodinolide, which was isolated from the symbiotic dinoflagellate Symbiodinium sp., exhibits significant voltage-dependent N-type Ca~(2+) channel-opening activity and may serve as a defense substance to prevent digestion of the host animals. Durinskiols are also unique long carbon-chain polyol compounds that were isolated from the dinoflagellate Durinskia sp. We found a selective cleavage reaction of allylic 1,2-diol using an olefin metathesis catalyst, and developed a fluorescent-labeling method for MS/MS analysis to achieve the structural elucidation of huge polyol compounds. This review highlights recent advances in structural and biological studies on symbiodinolide, durinskiols, and related polyol compounds.
机译:共生关系在海洋生态系统中起着至关重要的作用。在共生菌中,海洋鞭毛藻引起了天然产物化学家,生物学家和生态学家的关注,因为它们是独特的具有生物活性的次生代谢产物的丰富来源。从共生双鞭毛藻Symbiodinium sp。分离的多元醇化合物symbiodinolide具有显着的电压依赖性N型Ca〜(2+)通道开放活性,可作为防御宿主动物消化的防御物质。 Durinskiols还是独特的长碳链多元醇化合物,是从二鞭毛藻Durinskia sp。中分离出来的。我们发现使用烯烃复分解催化剂的烯丙基1,2-二醇的选择性裂解反应,并开发了用于MS / MS分析的荧光标记方法,以实现巨大的多元醇化合物的结构解析。这篇综述着重介绍了关于共生生物素,杜林斯基醇和相关多元醇化合物的结构和生物学研究的最新进展。

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