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抗蛇毒蛋白DM64的分子结构及其与蛇毒中肌毒素II的结合特异性

Molecular Architecture of the Antiophidic Protein DM64 and its Binding Specificity to Myotoxin II From Venom.

作者信息

Soares Barbara S, Rocha Surza Lucia G, Bastos Viviane A, Lima Diogo B, Carvalho Paulo C, Gozzo Fabio C, Demeler Borries, Williams Tayler L, Arnold Janelle, Henrickson Amy, Jørgensen Thomas J D, Souza Tatiana A C B, Perales Jonas, Valente Richard H, Lomonte Bruno, Gomes-Neto Francisco, Neves-Ferreira Ana Gisele C

机构信息

Laboratory of Toxinology, Oswaldo Cruz Institute, Rio de Janeiro, Brazil.

Department of Chemical Biology, Leibniz Forschungsinstitut für Molekulare Pharmakologie (FMP), Berlin, Germany.

出版信息

Front Mol Biosci. 2022 Jan 27;8:787368. doi: 10.3389/fmolb.2021.787368. eCollection 2021.

Abstract

DM64 is a toxin-neutralizing serum glycoprotein isolated from , an ophiophagous marsupial naturally resistant to snake envenomation. This 64 kDa antitoxin targets myotoxic phospholipases A, which account for most local tissue damage of viperid snakebites. We investigated the noncovalent complex formed between native DM64 and myotoxin II, a myotoxic phospholipase-like protein from venom. Analytical ultracentrifugation (AUC) and size exclusion chromatography indicated that DM64 is monomeric in solution and binds equimolar amounts of the toxin. Attempts to crystallize native DM64 for X-ray diffraction were unsuccessful. Obtaining recombinant protein to pursue structural studies was also challenging. Classical molecular modeling techniques were impaired by the lack of templates with more than 25% sequence identity with DM64. An integrative structural biology approach was then applied to generate a three-dimensional model of the inhibitor bound to myotoxin II. I-TASSER individually modeled the five immunoglobulin-like domains of DM64. Distance constraints generated by cross-linking mass spectrometry of the complex guided the docking of DM64 domains to the crystal structure of myotoxin II, using Rosetta. AUC, small-angle X-ray scattering (SAXS), molecular modeling, and molecular dynamics simulations indicated that the DM64-myotoxin II complex is structured, shows flexibility, and has an anisotropic shape. Inter-protein cross-links and limited hydrolysis analyses shed light on the inhibitor's regions involved with toxin interaction, revealing the critical participation of the first, third, and fifth domains of DM64. Our data showed that the fifth domain of DM64 binds to myotoxin II amino-terminal and beta-wing regions. The third domain of the inhibitor acts in a complementary way to the fifth domain. Their binding to these toxin regions presumably precludes dimerization, thus interfering with toxicity, which is related to the quaternary structure of the toxin. The first domain of DM64 interacts with the functional site of the toxin putatively associated with membrane anchorage. We propose that both mechanisms concur to inhibit myotoxin II toxicity by DM64 binding. The present topological characterization of this toxin-antitoxin complex constitutes an essential step toward the rational design of novel peptide-based antivenom therapies targeting snake venom myotoxins.

摘要

DM64是一种从一种对蛇毒具有天然抗性的食蛇有袋动物中分离出的毒素中和血清糖蛋白。这种64 kDa的抗毒素靶向肌毒性磷脂酶A,它是蝰蛇咬伤导致局部组织损伤的主要原因。我们研究了天然DM64与肌毒素II(一种来自[某种蛇]毒液的肌毒性磷脂酶样蛋白)之间形成的非共价复合物。分析超速离心(AUC)和尺寸排阻色谱表明,DM64在溶液中是单体形式,并结合等摩尔量的毒素。尝试对天然DM64进行结晶以用于X射线衍射未成功。获取重组蛋白以进行结构研究也具有挑战性。由于缺乏与DM64序列同一性超过25%的模板,经典分子建模技术受到阻碍。然后应用综合结构生物学方法生成与肌毒素II结合的抑制剂的三维模型。I-TASSER分别对DM64的五个免疫球蛋白样结构域进行建模。通过复合物的交联质谱产生的距离约束指导使用Rosetta将DM64结构域对接至肌毒素II的晶体结构。AUC、小角X射线散射(SAXS)、分子建模和分子动力学模拟表明,DM64-肌毒素II复合物具有结构,表现出灵活性,并且具有各向异性形状。蛋白质间交联和有限水解分析揭示了抑制剂与毒素相互作用所涉及的区域,揭示了DM64的第一、第三和第五结构域的关键参与。我们的数据表明,DM64的第五结构域与肌毒素II的氨基末端和β-翼区域结合。抑制剂的第三结构域以与第五结构域互补的方式起作用。它们与这些毒素区域的结合可能阻止二聚化,从而干扰毒性,这与毒素的四级结构有关。DM64 的第一结构域与推测与膜锚定相关的毒素功能位点相互作用。我们提出这两种机制共同作用以通过DM64结合来抑制肌毒素II的毒性。这种毒素-抗毒素复合物目前的拓扑特征是朝着合理设计针对蛇毒肌毒素的新型基于肽的抗蛇毒血清疗法迈出的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb5b/8830425/acc8d1c173e6/fmolb-08-787368-g001.jpg

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