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探讨猴痘病毒假设蛋白的结构和功能的方法,探索 Chordopox-A20R 结构域包含蛋白的活性。

approach to characterize the structure and function of a hypothetical protein of Monkeypox virus exploring Chordopox-A20R domain-containing protein activity.

机构信息

Department of Biotechnology and Genetic Engineering, Noakhali Science and Technology University, Noakhali, Bangladesh.

Bangladesh Jute Research Institute (BJRI), Cumilla, Bangladesh.

出版信息

Antivir Ther. 2024 Jun;29(3):13596535241255199. doi: 10.1177/13596535241255199.

Abstract

Monkeypox has emerged as a noteworthy worldwide issue due to its daily escalating case count. This illness presents diverse symptoms, including skin manifestations, which have the potential to spread through contact. The transmission of this infectious agent is intricate and readily transfers between individuals. The hypothetical protein MPXV-SI-2022V502225_00135 strain of monkeypox underwent structural and functional analysis using NCBI-CD Search, Pfam, and InterProScan. Quality assessment utilized PROCHECK, QMEAN, Verify3D, and ERRAT, followed by protein-ligand docking, visualization, and a 100-nanosecond simulation on Schrodinger Maestro. Different physicochemical properties were estimated, indicating a stable molecular weight (49147.14) and theoretical pI (5.62) with functional annotation tools predicting the target protein to contain the domain of Chordopox_A20R domain. In secondary structure analysis, the helix coil was found to be predominant. The three-dimensional (3D) structure of the protein was obtained using a template protein (PDB ID: ), which became more stable after YASARA energy minimization and was validated by quality assessment tools like PROCHECK, QMEAN, Verify3D, and ERRAT. Protein-ligand docking was conducted using PyRx 9.0 software to examine the binding and interactions between a ligand and a hypothetical protein, focusing on various amino acids. The model structure, active site, and binding site were visualized using the CASTp server, FTsite, and PyMOL. A 100 nanosecond simulation was performed with ligand CID_16124688 to evaluate the efficiency of this protein. The analysis revealed significant binding interactions and enhanced stability, aiding in drug or vaccine design for effective antiviral treatment and patient management.

摘要

猴痘已成为全球关注的重要问题,因为其每日病例数不断攀升。这种疾病表现出多种症状,包括皮肤表现,这些症状可能通过接触传播。这种传染性病原体的传播很复杂,很容易在人与人之间传播。使用 NCBI-CD Search、Pfam 和 InterProScan 对猴痘的假设蛋白 MPXV-SI-2022V502225_00135 株进行了结构和功能分析。使用 PROCHECK、QMEAN、Verify3D 和 ERRAT 进行质量评估,然后进行蛋白质-配体对接、可视化和在 Schrödinger Maestro 上进行 100 纳秒模拟。估计了不同的物理化学性质,表明稳定的分子量(49147.14)和理论 pI(5.62),功能注释工具预测目标蛋白包含 Chordopox_A20R 结构域。在二级结构分析中,发现螺旋线圈占主导地位。使用模板蛋白(PDB ID:)获得蛋白质的三维(3D)结构,在 YASARA 能量最小化后变得更加稳定,并通过 PROCHECK、QMEAN、Verify3D 和 ERRAT 等质量评估工具进行验证。使用 PyRx 9.0 软件进行蛋白质-配体对接,以检查配体和假设蛋白之间的结合和相互作用,重点是各种氨基酸。使用 CASTp 服务器、FTsite 和 PyMOL 可视化模型结构、活性位点和结合位点。使用配体 CID_16124688 进行 100 纳秒模拟,以评估该蛋白的效率。分析表明存在显著的结合相互作用和增强的稳定性,有助于设计药物或疫苗,以进行有效的抗病毒治疗和患者管理。

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