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来自羽藻目管型绿藻的硫酸化酚酸。

Sulfated phenolic acids from Dasycladales siphonous green algae.

作者信息

Kurth Caroline, Welling Matthew, Pohnert Georg

机构信息

Friedrich Schiller University Jena, Institute for Inorganic and Analytical Chemistry, Bioorganic Analytics, Lessingstraße 8, 07743 Jena, Germany.

Friedrich Schiller University Jena, Institute for Inorganic and Analytical Chemistry, Bioorganic Analytics, Lessingstraße 8, 07743 Jena, Germany.

出版信息

Phytochemistry. 2015 Sep;117:417-423. doi: 10.1016/j.phytochem.2015.07.010. Epub 2015 Jul 15.

Abstract

Sulfated aromatic acids play a central role as mediators of chemical interactions and physiological processes in marine algae and seagrass. Among others, Dasycladus vermicularis (Scopoli) Krasser 1898 uses a sulfated hydroxylated coumarin derivative as storage metabolite for a protein cross linker that can be activated upon mechanical disruption of the alga. We introduce a comprehensive monitoring technique for sulfated metabolites based on fragmentation patterns in liquid chromatography/mass spectrometry and applied it to Dasycladales. This allowed the identification of two new aromatic sulfate esters 4-(sulfooxy)phenylacetic acid and 4-(sulfooxy)benzoic acid. The two metabolites were synthesized to prove the mass spectrometry-based structure elucidation in co-injections. We show that both metabolites are transformed to the corresponding desulfated phenols by sulfatases of bacteria. In biofouling experiments with Escherichia coli and Vibrio natriegens the desulfated forms were more active than the sulfated ones. Sulfatation might thus represent a measure of detoxification that enables the algae to store inactive forms of metabolites that are activated by settling organisms and then act as defense.

摘要

硫酸化芳香酸在海藻和海草的化学相互作用和生理过程中作为介质发挥着核心作用。其中,1898年命名的蠕虫仙菜(Dasycladus vermicularis (Scopoli) Krasser)将一种硫酸化羟基香豆素衍生物用作蛋白质交联剂的储存代谢物,该交联剂可在藻类受到机械破坏时被激活。我们基于液相色谱/质谱中的碎片模式,引入了一种用于硫酸化代谢物的综合监测技术,并将其应用于羽藻目。这使得我们鉴定出两种新的芳香硫酸酯,即4-(磺氧基)苯乙酸和4-(磺氧基)苯甲酸。合成了这两种代谢物,以通过共注射实验证明基于质谱的结构解析。我们发现,这两种代谢物都会被细菌的硫酸酯酶转化为相应的去硫酸化酚类。在大肠杆菌和耐盐弧菌的生物污损实验中,去硫酸化形式比硫酸化形式更具活性。因此,硫酸化可能是一种解毒措施,使藻类能够储存非活性形式的代谢物,这些代谢物在附着生物作用下被激活,进而起到防御作用。

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