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Prediction of protein-protein interactions in dengue virus coat proteins guided by low resolution cryoEM structures

机译:低分辨率cryoEM结构指导的登革病毒外壳蛋白中蛋白质-蛋白质相互作用的预测

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Background Dengue virus along with the other members of the flaviviridae family has reemerged as deadly human pathogens. Understanding the mechanistic details of these infections can be highly rewarding in developing effective antivirals. During maturation of the virus inside the host cell, the coat proteins E and M undergo conformational changes, altering the morphology of the viral coat. However, due to low resolution nature of the available 3-D structures of viral assemblies, the atomic details of these changes are still elusive. Results In the present analysis, starting from Cα positions of low resolution cryo electron microscopic structures the residue level details of protein-protein interaction interfaces of dengue virus coat proteins have been predicted. By comparing the preexisting structures of virus in different phases of life cycle, the changes taking place in these predicted protein-protein interaction interfaces were followed as a function of maturation process of the virus. Besides changing the current notion about the presence of only homodimers in the mature viral coat, the present analysis indicated presence of a proline-rich motif at the protein-protein interaction interface of the coat protein. Investigating the conservation status of these seemingly functionally crucial residues across other members of flaviviridae family enabled dissecting common mechanisms used for infections by these viruses. Conclusions Thus, using computational approach the present analysis has provided better insights into the preexisting low resolution structures of virus assemblies, the findings of which can be made use of in designing effective antivirals against these deadly human pathogens.
机译:背景登革热病毒与黄病毒科的其他成员一起再次成为致命的人类病原体。了解这些感染的机理细节可能对开发有效的抗病毒药物有很大的帮助。在宿主细胞内病毒成熟期间,外壳蛋白E和M发生构象变化,从而改变了病毒外壳的形态。但是,由于可用的病毒组装3-D结构的分辨率较低,因此这些变化的原子细节仍然难以捉摸。结果在本分析中,已从低分辨率冷冻电子显微结构的Cα位置开始,预测了登革病毒外壳蛋白的蛋白质-蛋白质相互作用界面的残基水平细节。通过比较生命周期不同阶段中病毒的既有结构,可以跟踪这些预测的蛋白质-蛋白质相互作用界面中发生的变化,作为病毒成熟过程的函数。除了改变关于在成熟病毒外壳中仅存在同二聚体的当前观念之外,本分析还表明在外壳蛋白的蛋白质-蛋白质相互作用界面上存在富含脯氨酸的基序。研究黄病毒科其他成员中这些看似功能上至关重要的残基的保护状态,使得能够剖析用于这些病毒感染的常见机制。结论因此,使用计算方法,本分析为先前存在的病毒装配体的低分辨率结构提供了更好的见解,其发现可用于设计针对这些致命人类病原体的有效抗病毒剂。

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