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Proteomic Analysis of Novel Components of Nemopilema nomurai Jellyfish Venom: Deciphering the Mode of Action

机译:Nemopilema nomurai水母毒液新成分的蛋白质组学分析:破译作用方式

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摘要

Nowadays, proliferation of jellyfish has become a severe matter in many coastal areas around the world. Jellyfish Nemopilema nomurai is one of the most perilous organisms and leads to significant deleterious outcomes such as harm to the fishery, damage the coastal equipment, and moreover, its envenomation can be hazardous to the victims. Till now, the components of Nemopilema nomurai venom (NnV) are unknown owing to scant transcriptomics and genomic data. In the current research, we have explored a proteomic approach to identify NnV components and their interrelation with pathological effects caused by the jellyfish sting. Altogether, 150 proteins were identified, comprising toxins and other distinct proteins that are substantial in nematocyst genesis and nematocyte growth by employing two-dimensional gel electrophoresis and matrix-assisted laser desorption/ionization time of flight mass spectrometry (MALDI/TOF/MS). The identified toxins are phospholipase A2, phospholipase D Li Sic Tox beta IDI, a serine protease, putative Kunitz-type serine protease inhibitor, disintegrin and metalloproteinase, hemolysin, leukotoxin, three finger toxin MALT0044C, allergens, venom prothrombin activator trocarin D, tripeptide Gsp 9.1, and along with other toxin proteins. These toxins are relatively well characterized in the venoms of other poisonous species to induce pathogenesis, hemolysis, inflammation, proteolysis, blood coagulation, cytolysis, hemorrhagic activity, and type 1 hypersensitivity, suggesting that these toxins in NnV can also cause similar deleterious consequences. Our proteomic works indicate that NnV protein profile represents valuable source which leads to better understanding the clinical features of the jellyfish stings. As one of the largest jellyfish in the world, Nemopilema nomurai sting is considered to be harmful to humans due to its potent toxicity. The identification and functional characterization of its venom components have been poorly described and are beyond our knowledge. Here is the first report demonstrating the methodical overview of NnV proteomics research, providing significant information to understand the mechanism of NnV envenomation. Our proteomics findings can provide a platform for novel protein discovery and development of practical ways to deal with jellyfish stings on human beings.
机译:如今,水母的繁殖已成为世界许多沿海地区的严重问题。海noNemopilema nomurai是最危险的生物之一,会导致严重的有害后果,例如对渔业的损害,对沿海设备的损害,此外,其毒化可能对受害者造成危害。到目前为止,由于缺乏转录组学和基因组数据,尚不清楚野村奈莫氏蛇毒(NnV)的成分。在当前的研究中,我们已经探索了一种蛋白质组学方法来鉴定NnV成分及其与水母ing伤引起的病理效应的相互关系。通过使用二维凝胶电泳和基质辅助激光解吸/电离飞行时间质谱(MALDI / TOF / MS),一共鉴定出150种蛋白质,其中包括毒素和其他在线虫囊胚发生和神经细胞生长中很重要的蛋白质。鉴定出的毒素是磷脂酶A2,磷脂酶D Li Sic Tox beta IDI,丝氨酸蛋白酶,推定的Kunitz型丝氨酸蛋白酶抑制剂,整联蛋白和金属蛋白酶,溶血素,白细胞毒素,三指毒素MALT0044C,变应原,毒液凝血酶原激活剂trocarin D,三肽G 9.1,以及其他毒素蛋白。这些毒素在其他有毒物种的毒液中具有相对较好的特征,可诱发发病机理,溶血,炎症,蛋白水解,血液凝固,细胞溶解,出血活性和1型超敏反应,这表明NnV中的这些毒素也可能引起类似的有害后果。我们的蛋白质组学研究表明NnV蛋白谱代表了有价值的来源,可帮助您更好地了解水母st的临床特征。作为世界上最大的水母之一,Nemopilema nomurai ing由于其强大的毒性而被认为对人类有害。其毒液成分的鉴定和功能表征描述不清,超出了我们的了解。这是第一份报告,展示了NnV蛋白质组学研究的方法性概述,为了解NnV毒化机制提供了重要信息。我们的蛋白质组学发现可为新型蛋白质发现和开发实用方法提供平台,以应对人类上的水母st伤。

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