Jia Ying, Lopez Ivan, Kowalski Paulina
Biology Department, The University of Texas Rio Grande Valley, Brownsville, Texas 78520, USA.
J Venom Res. 2020 Jun 17;10:18-22. eCollection 2020.
The western diamondback rattlesnake () is a common and widespread North American pit viper species, and its venom possesses medical applications. In this research, we identified 14 of the most common transcripts encoding 11 major venom toxins including transcripts for a three-finger toxin (3FTx) from the crude venom of three-dimensional (3D) structures of 9 venom toxins were predicted by using deduced toxin amino acid sequences and a computer programme-MODELLER. The accuracy of all predicted toxin structures was evaluated by five stereochemical structure parameters including discrete optimised protein energy (DOPE) score, root mean square deviation (RMSD), Z-score, overall quality factor (ERRAT), and φ/ψ dihedral angle distribution of toxin backbone Cα residues, resulting that the overall predicted models are satisfied quality evaluation checks. Our present toxin transcripts and simulated individual toxin structures are important not only for revealing species-specific venom gene expression profiles, but also for predicting the toxin-toxin interactions and designing the structure-based toxin inhibitors for the treatment of snakebites.
西部菱斑响尾蛇(学名:Crotalus atrox)是一种常见且分布广泛的北美洲蝰蛇科毒蛇,其毒液具有医学应用价值。在本研究中,我们从该蛇的粗毒中鉴定出14种最常见的转录本,这些转录本编码11种主要的毒液毒素,其中包括一种三指毒素(3FTx)的转录本。利用推导的毒素氨基酸序列和计算机程序MODELER预测了9种毒液毒素的三维(3D)结构。通过离散优化蛋白质能量(DOPE)得分、均方根偏差(RMSD)、Z分数、整体质量因子(ERRAT)以及毒素主链Cα残基的φ/ψ二面角分布这五个立体化学结构参数对所有预测毒素结构的准确性进行了评估,结果表明总体预测模型通过了质量评估检查。我们目前得到的毒素转录本和模拟的单个毒素结构不仅对于揭示物种特异性毒液基因表达谱很重要,而且对于预测毒素 - 毒素相互作用以及设计用于治疗蛇咬伤的基于结构的毒素抑制剂也很重要。