State Key Laboratory of Quality Research in Chinese Medicine and Institute of Chinese Medical Sciences, University of Macau, Macau, China.
Department of Computer and Information Science, Faculty of Science and Technology, University of Macau, Macau, China.
Toxins (Basel). 2018 Jun 12;10(6):238. doi: 10.3390/toxins10060238.
(class Anthozoa) is a zoantharian which, together with other cnidarians, like jellyfishes, hydra, and sea anemones, possesses specialized structures in its tissues, the cnidocytes, which deliver an array of toxins in order to capture prey and deter predators. The whole transcriptome of was deep sequenced, and a diversity of toxin-related peptide sequences were identified, and some retrieved for functional analysis. In this work, a peptide precursor containing a ShK domain, named PcShK3, was analyzed by means of computational processing, comprising structural phylogenetic analysis, model prediction, and dynamics simulation of peptide-receptor interaction. The combined data indicated that PcShK3 is a distinct peptide which is homologous to a cluster of peptides belonging to the ShK toxin family. In vivo, PcShK3 distributed across the vitelline membrane and accumulated in the yolk sac stripe of zebrafish larvae. Notably, it displayed a significant cardio-protective effect in zebrafish in concentrations inferior to the IC (<43.53 ± 6.45 µM), while in high concentrations (>IC), it accumulated in the blood and caused pericardial edema, being cardiotoxic to zebrafish larvae. Remarkably, PcShK3 suppressed the 6-OHDA-induced neurotoxicity on the locomotive behavior of zebrafish. The present results indicated that PcShK3 is a novel member of ShK toxin family, and has the intrinsic ability to induce neuro- and cardio-protective effects or cause cardiac toxicity, according to its effective concentration.
(珊瑚纲)是一种珊瑚虫,与其他刺胞动物(如水母、水螅和海葵)一样,在其组织中具有专门的结构——刺细胞,这些刺细胞能够释放一系列毒素,以捕获猎物和威慑捕食者。对整个进行了深度测序,鉴定出了多种与毒素相关的肽序列,并对其中一些进行了功能分析。在这项工作中,分析了一种含有 ShK 结构域的肽前体,命名为 PcShK3,通过计算处理,包括结构系统发育分析、肽-受体相互作用的模型预测和动力学模拟,对其进行了分析。综合数据表明,PcShK3 是一种独特的肽,与 ShK 毒素家族的一簇肽同源。在体内,PcShK3 分布在卵黄膜上,并在斑马鱼幼虫的卵黄囊条纹中积累。值得注意的是,它在低于 IC(<43.53 ± 6.45 μM)的浓度下对斑马鱼表现出显著的心脏保护作用,而在高浓度(>IC)下,它会在血液中积累并导致心包水肿,对斑马鱼幼虫具有心脏毒性。值得注意的是,PcShK3 抑制了 6-OHDA 对斑马鱼运动行为的神经毒性。这些结果表明,PcShK3 是 ShK 毒素家族的一个新成员,根据其有效浓度,具有诱导神经和心脏保护作用或引起心脏毒性的内在能力。