Zemskov Ivan, Kropp Heike M, Wittmann Valentin
University of Konstanz, Department of Chemistry and Konstanz Research School Chemical Biology (KoRS-CB), 78457, Konstanz, Germany.
Chemistry. 2016 Jul 25;22(31):10990-7. doi: 10.1002/chem.201601660. Epub 2016 Jun 27.
Microcystins are cyanobacterial toxins that can be found in fresh and coastal waters during algal blooms. Microcystin contamination of water can cause severe poisoning of animals and humans. Quantification of these toxins in biological samples is complicated because a major proportion of microcystins is covalently linked to proteins through thioether bonds formed through a Michael-type addition of cysteine residues of proteins to an N-methyldehydroalanine residue in the microcystins. We investigated chemical methods that can be used to cleave such thioether bonds by means of an elimination reaction that leaves the microcystin backbone intact for subsequent analysis. The known reagent O-mesitylenesulfonylhydroxylamine (MSH) led to regioselective thioether cleavage, but a large excess of reagent was needed, thus making purification challenging. An unexpected side reaction observed during the investigation of the base-induced elimination inspired us to develop a new thioether-cleavage methodology based on the addition of propargylamine as a nucleophile that can trap the elimination product. This methodology could be successfully applied to the quantitative cleavage of a microcystin-LF-glutathione conjugate. The alkyne moiety introduced by this procedure offers the possibility for further reactions with azides by using click chemistry, which might be useful for the derivatization or isolation of microcystins.
微囊藻毒素是蓝藻毒素,在藻华期间可在淡水和沿海水域中发现。水体中的微囊藻毒素污染可导致动物和人类严重中毒。对生物样品中的这些毒素进行定量分析很复杂,因为大部分微囊藻毒素通过蛋白质半胱氨酸残基与微囊藻毒素中的N-甲基脱氢丙氨酸残基进行迈克尔型加成形成的硫醚键与蛋白质共价连接。我们研究了一些化学方法,这些方法可通过消除反应来裂解此类硫醚键,从而使微囊藻毒素骨架保持完整以便后续分析。已知试剂邻均三甲苯磺酰羟胺(MSH)可实现区域选择性硫醚裂解,但需要大量过量的试剂,因此纯化具有挑战性。在对碱诱导消除反应的研究过程中观察到的一个意外副反应促使我们开发一种基于添加亲核试剂炔丙胺的新硫醚裂解方法,炔丙胺可捕获消除产物。该方法可成功应用于微囊藻毒素-LF-谷胱甘肽缀合物的定量裂解。通过该方法引入的炔基部分为利用点击化学与叠氮化物进一步反应提供了可能性,这可能对微囊藻毒素的衍生化或分离有用。