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一种针对白斑综合征病毒的肽抑制剂的计算方法:针对病毒包膜蛋白。

A computational approach to identifying peptide inhibitors againstWhite Spot Syndrome Virus: Targeting the virus envelope protein.

机构信息

Centre for Ocean Research, Sathyabama Institute of Science and Technology, Chennai, 600 119, India.

Centre for Ocean Research, Sathyabama Institute of Science and Technology, Chennai, 600 119, India.

出版信息

Microb Pathog. 2024 Oct;195:106849. doi: 10.1016/j.micpath.2024.106849. Epub 2024 Aug 13.

Abstract

The white spot syndrome virus (WSSV), a rapidly replicating and highly lethal pathogen that targets Penaeid shrimp, has emerged as one of the most widespread viruses globally due to its high virulence. With effective chemotherapeutics still unavailable, the pursuit of novel and viable strategies against WSSV remains a crucial focus in the field of shrimp farming. The envelope proteins of WSSV are essential for virus entry, serving as excellent targets for the development of antiviral therapeutics. Novel strategies in the design of inhibitory peptides, especially those targeting envelope protein (VP28) located on the surface of the virus particle, play a critical role as a significant virulence factor during the early stages of inherent WSSV infection in shrimp. In this direction, the current computational study focused on identifying self-inhibitory peptides from the hydrophobic membrane regions of the VP28 protein, employing peptide docking and molecular dynamics simulation (MDS) approaches. Such inhibitory peptides could be useful building blocks for the rational engineering of inhibitory therapeutics since they imitate the mechanism of binding to homologous partners used by their origin domain to interact with other molecules. The N-terminal sequence of VP28 has been reported as the potential site for membrane interactions during the virus entry. Moreover, drug delivery systems mediated by chitosan and gold nanoparticles are being developed to enhance the therapeutic efficacy of anti-viral peptides. These systems can increase the solubility, stability, and selectivity of peptides, possessing better qualities than conventional delivery methods. This computational study on self-inhibitory peptides could be a valuable resource for further in vitro and in vivo studies on anti-viral therapeutics in the aquaculture industry.

摘要

白斑综合征病毒(WSSV)是一种快速复制且具有高度致死性的病原体,专门攻击对虾。由于其高毒性,它已成为全球分布最广泛的病毒之一。由于缺乏有效的化学疗法,因此寻找针对 WSSV 的新型可行策略仍然是虾养殖领域的关键重点。WSSV 的包膜蛋白对于病毒进入至关重要,是开发抗病毒疗法的理想靶标。设计抑制肽的新策略,特别是针对位于病毒粒子表面的包膜蛋白(VP28)的抑制肽,在虾固有 WSSV 感染的早期阶段作为重要的毒力因子发挥着关键作用。在这方面,当前的计算研究集中在从 VP28 蛋白的疏水区域识别自抑制肽,采用肽对接和分子动力学模拟(MDS)方法。由于这些抑制肽模仿了同源伴侣结合的机制,因此可以作为合理设计抑制治疗的有用构建块,其起源域用于与其他分子相互作用。已经报道 VP28 的 N 端序列是病毒进入过程中膜相互作用的潜在位点。此外,正在开发壳聚糖和金纳米粒子介导的药物输送系统,以增强抗病毒肽的治疗效果。这些系统可以提高肽的溶解度、稳定性和选择性,具有比传统输送方法更好的质量。这项针对自抑制肽的计算研究可以为水产养殖行业中抗病毒治疗的进一步体外和体内研究提供有价值的资源。

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