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Investigating the Toxicity of the Aeruginosin Chlorosulfopeptides by Chemical Synthesis

机译:通过化学合成研究铜绿素蛋白氯磺肽的毒性

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Harmful algal blooms are becoming more prevalent all over the world, and identification and mechanism-of-action studies of the responsible toxins serve to protect ecosystems, livestock, and humans alike. In this study, the chlorosulfopeptide aeruginosin 828A, which rivals the well-known toxin microcystin LR in terms of crustacean toxicity, has been synthesized for the first time. Furthermore, three congeners with different permutations of the chloride and sulfate groups were prepared, thereby enabling toxicity studies without the risk of contamination by other natural toxins. Toxicity assays with the sensitive crustacean Thamnocephalus platyurus demonstrated that the introduction of a sulfate group leads to pronounced toxicity, and NMR spectroscopic evidence suggests that the chloride substituent modulates the conformation, which in turn might influence protease inhibition.
机译:有害的藻华在世界范围内日益流行,负责任毒素的鉴定和作用机理研究有助于保护生态系统,牲畜和人类。在这项研究中,首次合成了氯磺肽铜绿菌素828A,与甲壳素的毒性相媲美。此外,制备了三个氯离子和硫酸根基团排列不同的同类物,从而能够进行毒性研究,而不会受到其他天然毒素污染的风险。用敏感的甲壳类沙门氏菌(Thamnocephalus platyurus)进行的毒性试验表明,引入硫酸根基团会导致明显的毒性,NMR光谱证据表明,氯化物取代基可调节构象,进而可能影响蛋白酶抑制作用。

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