College of Traditional Chinese Medicine, Jilin Agricultural University, Changchun 130118, China; Faculty of Naval Medicine, Naval Medical University (Second Military Medical University), Shanghai 200433, China.
Faculty of Naval Medicine, Naval Medical University (Second Military Medical University), Shanghai 200433, China; School of Life Sciences, Liaoning Normal University, Dalian 116081, China.
J Hazard Mater. 2024 Jul 5;472:134526. doi: 10.1016/j.jhazmat.2024.134526. Epub 2024 May 3.
The proliferation of toxic organisms caused by changes in the marine environment, coupled with the rising human activities along the coastal lines, has resulted in an increasing number of stinging incidents, posing a serious threat to public health. Here, we evaluated the systemic toxicity of the venom in jellyfish Chrysaora quinquecirrha at both cellular and animal levels, and found that jellyfish tentacle extract (TE) has strong lethality accompanied by abnormal elevation of blood biochemical indicators and pathological changes. Joint analysis of transcriptome and proteome indicated that metalloproteinases are the predominant toxins in jellyfish. Specially, two key metalloproteinases DN6695_c0_g3 and DN8184_c0_g7 were identified by mass spectrometry of the red blood cell membrane and tetracycline hydrochloride (Tch) inhibition models. Structurally, molecular docking and kinetic analysis are employed and observed that Tch could inhibit the enzyme activity by binding to the hydrophobic pocket of the catalytic center. In this study, we demonstrated that Tch impedes the metalloproteinase activity thereby reducing the lethal effect of jellyfish, which suggests a potential strategy for combating the health threat of marine toxic jellyfish.
海洋环境变化导致有毒生物大量繁殖,再加上沿海地区人类活动的增加,导致蜇伤事件不断增加,严重威胁公众健康。在这里,我们在细胞和动物水平上评估了海蜇(Chrysaora quinquecirrha)毒液的全身毒性,发现水母触手提取物(TE)具有很强的致死性,同时伴有血液生化指标异常升高和病理变化。对转录组和蛋白质组的联合分析表明,金属蛋白酶是水母中的主要毒素。特别是,通过红细胞膜的质谱分析和盐酸四环素(Tch)抑制模型鉴定了两种关键的金属蛋白酶 DN6695_c0_g3 和 DN8184_c0_g7。结构上,采用分子对接和动力学分析,观察到 Tch 可以通过与催化中心的疏水口袋结合来抑制酶活性。在这项研究中,我们证明 Tch 可以抑制金属蛋白酶的活性,从而降低水母的致死效应,这为应对海洋有毒水母的健康威胁提供了一种潜在策略。