首页> 外文会议>Pacific Symposium on Biocomputing 2007 >PREDICTING STRUCTURE AND DYNAMICS OF LOOSELY-ORDERED PROTEIN COMPLEXES: INFLUENZA HEMAGGLUTININ FUSION PEPTIDE
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PREDICTING STRUCTURE AND DYNAMICS OF LOOSELY-ORDERED PROTEIN COMPLEXES: INFLUENZA HEMAGGLUTININ FUSION PEPTIDE

机译:有序蛋白复合体的预测结构和动力学:流感血凝素融合肽

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摘要

Transient and low-affinity protein complexes pose a challenge to existing experimental methods and traditional computational techniques for structural determination. One example of such a disordered complex is that formed by trimers of influenza virus fusion peptide inserted into a host cell membrane. This fusion peptide is responsible for mediating viral infection, and spectroscopic data suggest that the peptide forms loose multimeric associations that are important for viral infectivity. We have developed an ensemble simulation technique that harnesses > 1000 molecular dynamics trajectories to build a structural model for the arrangement of fusion peptide trimers. We predict a trimer structure in which the fusion peptides are packed into proximity while maintaining their monomeric structure. Our model helps to explain the effects of several mutations to the fusion peptide that destroy viral infectivity but do not measurably alter peptide monomer structure. This approach also serves as a general model for addressing the challenging problem of higher-order protein organization in cell membranes.
机译:瞬态和低亲和力蛋白复合物对现有的实验方法和传统的计算技术进行结构测定提出了挑战。这种无序复合物的一个实例是由插入宿主细胞膜中的流感病毒融合肽的三聚体形成的复合物。该融合肽负责介导病毒感染,并且光谱数据表明该肽形成对病毒感染性重要的松散的多聚体缔合。我们已经开发了一种集成仿真技术,该技术可以利用> 1000个分子动力学轨迹来构建融合肽三聚体排列的结构模型。我们预测三聚体结构,其中融合肽被包装到附近,同时保持其单体结构。我们的模型有助于解释几种融合肽突变的作用,这些突变破坏了病毒的感染力,但并没有可测量地改变肽单体的结构。这种方法也可作为解决细胞膜中高阶蛋白质组织挑战的通用模型。

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