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基于蛋白质基因组学指导的功能毒液组学解析了尖吻蝮蛇毒液的毒素库和活性。

Proteogenomics-guided functional venomics resolves the toxin arsenal and activity of Deinagkistrodon acutus venom.

机构信息

Animal Venomics Lab, Fraunhofer Institute for Molecular Biology and Applied Ecology (IME), Ohlebergsweg 12, 35392 Giessen, Germany; Institute for Insect Biotechnology, Justus Liebig University Giessen, Heinrich-Buff-Ring 26-32, 35392 Giessen, Germany; LOEWE Centre for Translational Biodiversity Genomics (LOEWE-TBG), Natural Product Genomics, Senckenberganlage 25, 60325 Frankfurt am Main, Germany.

Animal Venomics Lab, Fraunhofer Institute for Molecular Biology and Applied Ecology (IME), Ohlebergsweg 12, 35392 Giessen, Germany; Institute for Insect Biotechnology, Justus Liebig University Giessen, Heinrich-Buff-Ring 26-32, 35392 Giessen, Germany; LOEWE Centre for Translational Biodiversity Genomics (LOEWE-TBG), Natural Product Genomics, Senckenberganlage 25, 60325 Frankfurt am Main, Germany; Branch for Bioresources, Fraunhofer Institute for Molecular Biology and Applied Ecology (IME), Ohlebergsweg 12, 35392 Giessen, Germany.

出版信息

Int J Biol Macromol. 2024 Oct;278(Pt 4):135041. doi: 10.1016/j.ijbiomac.2024.135041. Epub 2024 Aug 23.

Abstract

Snakebite primarily impacts rural communities of Africa, Asia, and Latin America. The sharp-nosed viper (Deinagkistrodon acutus) is among the snakes of highest medical importance in Asia. Despite various studies on its venom using modern venomics techniques, a comprehensive understanding of composition and function of this species' venom remains lacking. We combined proteogenomics with extensive bioactivity profiling to present the first genome-level catalogue of D. acutus venom proteins and their exochemistry. Our analysis identified an unusually simple venom containing 45 components from 20 distinct protein families. Relative toxin abundances indicate that C-type lectin and C-type lectin-related protein (CTL), snake venom metalloproteinase (svMP), snake venom serine protease (svSP), and phospholipase A (PLA) constitute 90 % of the venom. Bioassays targeting key aspects of viperid envenomation showed considerable concentration-dependent cytotoxicity, particularly in kidney and lung cells, and potent protease and PLA activity. Factor Xa and thrombin activities were minor, and no plasmin activity was observed. Effects on haemolysis, intracellular calcium (Ca) release, and nitric oxide (NO) synthesis were negligible. Our analysis provides the first holistic genome-based overview of the toxin arsenal of D. acutus, predicting the molecular and functional basis of its life-threatening effects, and opens novel avenues for treating envenomation by this highly dangerous snake.

摘要

蛇伤主要影响非洲、亚洲和拉丁美洲的农村社区。尖吻蝮(Deinagkistrodon acutus)是亚洲最重要的蛇类之一。尽管有许多关于其毒液的现代 venomomics 技术研究,但对该物种毒液的组成和功能仍缺乏全面了解。我们结合蛋白质组学和广泛的生物活性分析,首次呈现了 D. acutus 毒液蛋白及其外分泌组的基因组水平目录。我们的分析鉴定出一种异常简单的毒液,其中含有来自 20 个不同蛋白家族的 45 个成分。相对毒素丰度表明 C 型凝集素和 C 型凝集素相关蛋白 (CTL)、蛇毒金属蛋白酶 (svMP)、蛇毒丝氨酸蛋白酶 (svSP) 和磷脂酶 A (PLA) 构成了毒液的 90%。针对蝰蛇毒液中毒关键方面的生物测定显示出相当大的浓度依赖性细胞毒性,特别是对肾脏和肺细胞,以及强大的蛋白酶和 PLA 活性。Xa 因子和凝血酶活性较小,没有观察到纤溶酶活性。对溶血、细胞内钙 (Ca) 释放和一氧化氮 (NO) 合成的影响可以忽略不计。我们的分析提供了 D. acutus 毒素库的第一个基于全基因组的综合概述,预测了其危及生命的影响的分子和功能基础,并为治疗这种极其危险的蛇咬伤开辟了新途径。

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