Institute of Climate Adaptation and Marine Biotechnology (ICAMB), Universiti Malaysia Terengganu, Kuala Nerus, Terengganu, Malaysia.
Faculty of Science and Technology, Universiti Sains Islam Malaysia, Bandar Baru Nilai, Nilai, Negeri Sembilan, Malaysia.
PLoS One. 2024 Jan 24;19(1):e0297759. doi: 10.1371/journal.pone.0297759. eCollection 2024.
Shrimp aquaculture contributes significantly to global economic growth, and the whiteleg shrimp, Penaeus vannamei, is a leading species in this industry. However, Vibrio parahaemolyticus infection poses a major challenge in ensuring the success of P. vannamei aquaculture. Despite its significance in this industry, the biological knowledge of its pathogenesis remains unclear. Hence, this study was conducted to identify the interaction sites and binding affinity between several immune-related proteins of P. vannamei with V. parahaemolyticus proteins associated with virulence factors. Potential interaction sites and the binding affinity between host and pathogen proteins were identified using molecular docking and dynamics (MD) simulation. The P. vannamei-V. parahaemolyticus protein-protein interaction of Complex 1 (Ferritin-HrpE/YscL family type III secretion apparatus protein), Complex 2 (Protein kinase domain-containing protein-Chemotaxis CheY protein), and Complex 3 (GPCR-Chemotaxis CheY protein) was found to interact with -4319.76, -5271.39, and -4725.57 of the docked score and the formation of intermolecular bonds at several interacting residues. The docked scores of Complex 1, Complex 2, and Complex 3 were validated using MD simulation analysis, which revealed these complexes greatly contribute to the interactions between P. vannamei and V. parahaemolyticus proteins, with binding free energies of -22.50 kJ/mol, -30.20 kJ/mol, and -26.27 kJ/mol, respectively. This finding illustrates the capability of computational approaches to search for molecular binding sites between host and pathogen, which could increase the knowledge of Vibrio spp. infection on shrimps, which then can be used to assist in the development of effective treatment.
虾类养殖对全球经济增长做出了重大贡献,而凡纳滨对虾(Penaeus vannamei)是该行业的主要品种。然而,副溶血性弧菌感染是确保凡纳滨对虾养殖成功的主要挑战。尽管它在该行业中具有重要意义,但对其发病机制的生物学知识仍不清楚。因此,本研究旨在鉴定凡纳滨对虾几种与致病性相关的毒力因子相关的免疫相关蛋白与副溶血性弧菌蛋白之间的相互作用位点和结合亲和力。使用分子对接和动力学(MD)模拟来鉴定宿主和病原体蛋白之间的潜在相互作用位点和结合亲和力。鉴定了 Complex 1(铁蛋白-HrpE/YscL 家族 III 型分泌装置蛋白)、Complex 2(蛋白激酶结构域含蛋白-趋化性 CheY 蛋白)和 Complex 3(GPCR-趋化性 CheY 蛋白)中凡纳滨对虾-副溶血性弧菌蛋白-蛋白相互作用,发现对接得分的-4319.76、-5271.39 和-4725.57,以及几个相互作用残基处形成的分子间键。使用 MD 模拟分析对 Complex 1、Complex 2 和 Complex 3 的对接得分进行了验证,结果表明这些复合物极大地促进了凡纳滨对虾和副溶血性弧菌蛋白之间的相互作用,其结合自由能分别为-22.50 kJ/mol、-30.20 kJ/mol 和-26.27 kJ/mol。这一发现说明了计算方法在搜索宿主和病原体之间分子结合位点方面的能力,这可以增加对虾类 Vibrio spp.感染的认识,从而有助于开发有效的治疗方法。