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黑犹地亚蝎子(Hottentotta judaicus,钳蝎科)毒液的蛋白质组学特征及致死性:毒素多样性的扩展与毒理学意义的重新审视

Proteomic characterization and lethality of the venom of the Black Judean scorpion, Hottentotta judaicus (Buthidae): expanded toxin diversity and revisited toxicological significance.

作者信息

Borges Adolfo, Lomonte Bruno, de Arias Antonieta Rojas, Fernández Julián

机构信息

Centro Para El Desarrollo de La Investigación Científica, Asunción, 1255, Paraguay.

Instituto de Medicina Experimental, Universidad Central de Venezuela, Caracas, 50587, Venezuela.

出版信息

Arch Toxicol. 2025 Sep 10. doi: 10.1007/s00204-025-04186-x.

Abstract

The scorpion Hottentotta judaicus inhabits the Levant region of the Middle East, including Lebanon, Jordan, Palestine, and Israel. While previous research focused on its insecticidal properties and sodium-channel-targeting toxins, its venom remains largely unexplored using modern proteomic approaches. We analyzed the venom composition of H. judaicus from Lebanese specimens using nESI-MS/MS, MALDI-TOF MS, SDS-PAGE, and RP-HPLC. Venom lethality in mice was assessed (LD₅₀ = 11.87 [6.59-17.16] mg/kg, i.p.), confirming moderate toxicity to vertebrates. RP-HPLC on C resolved 37 peaks, with 25 eluting between 20-40% acetonitrile. Reducing SDS-PAGE revealed predominant components < 10 kDa and minor bands at 31, 46, and 77 kDa. MaLDI-TOF MS detected 20 components from 1,000-12,000 m/z. A bottom-up shotgun nLC-MS/MS approach, following in-gel tryptic digestion of venom, identified 55 components across 15 protein families. Ion channel-active toxins [K⁺ (7), Na⁺ (16), Cl⁻ (1), ryanodine receptor (1)] and enzyme components (17) were predominant. This study provides proteomic evidence of H. judaicus venom components previously only identified at the transcriptomic level and reveals a richer venom profile than anticipated. Novel identified components include alternative β-subunits of lipolysis-activating proteins, as well as homologs of Olivierus martensii antimicrobial peptide inhibitor HAP-1, Leiurus hebraeus Lqhβ1, Parabuthus transvaalicus Birtoxin, and peptide Hj2a from Hottentotta jayakari exhibiting dual α/β-toxin activity on Nav1.1 channels. This expanding repertoire of potential bioactive components prompts a reevaluation of the pathophysiological consequences of H. judaicus envenomation in humans and further exploration of their potential biomedical applications.

摘要

以色列金蝎栖息于中东的黎凡特地区,包括黎巴嫩、约旦、巴勒斯坦和以色列。虽然先前的研究集中在其杀虫特性和靶向钠通道的毒素上,但使用现代蛋白质组学方法对其毒液的研究仍基本未被探索。我们使用nESI-MS/MS、MALDI-TOF MS、SDS-PAGE和RP-HPLC分析了来自黎巴嫩标本的以色列金蝎毒液成分。评估了毒液对小鼠的致死性(LD₅₀ = 11.87 [6.59 - 17.16] mg/kg,腹腔注射),证实其对脊椎动物具有中等毒性。RP-HPLC在C柱上分离出37个峰,其中25个在20 - 40%乙腈之间洗脱。还原型SDS-PAGE显示主要成分<10 kDa,以及31、46和77 kDa处的次要条带。MALDI-TOF MS在1000 - 12000 m/z范围内检测到20种成分。一种自下而上的鸟枪法nLC-MS/MS方法,在对毒液进行胶内胰蛋白酶消化后,在15个蛋白质家族中鉴定出55种成分。离子通道活性毒素[K⁺(7种)、Na⁺(16种)、Cl⁻(1种)、兰尼碱受体(1种)]和酶成分(17种)占主导地位。本研究提供了先前仅在转录组水平鉴定的以色列金蝎毒液成分的蛋白质组学证据,并揭示了比预期更丰富的毒液谱。新鉴定的成分包括脂解激活蛋白的替代β亚基,以及马氏正钳蝎抗菌肽抑制剂HAP-1、以色列金蝎Lqhβ1、德兰士瓦肥尾蝎Birtoxin的同源物,以及杰氏金蝎的肽Hj2a,其对Nav1.1通道具有双重α/β毒素活性。这种潜在生物活性成分的不断增加促使人们重新评估以色列金蝎蜇伤对人类的病理生理后果,并进一步探索它们潜在的生物医学应用。

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