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Determination of the fold of the core protein of hepatitis B virus by electron cryomicroscopy

机译:电子冷冻显微镜测定乙型肝炎病毒核心蛋白的倍数

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Hepatitis B virus, a major human pathogen with an estimated 300 million carriers worldwide, can lead to cirrhosis and liver cancer in cases of chronic infection. The virus consists of an inner nucleocapsid or core, surrounded by a lipid envelope containing virally encoded surface proteins. The core protein, when expressed in bacteria, assembles into core shell particles, closely resembling the native core of the virus. Here we use electron cryomicroscopy to solve the structure of the core protein to 7.4 A resolution. Images of about 6,400 individual particles from 34 micrographs at different levels of defocus were combined, imposing icosahedral symmetry. The three-dimensional map reveals the complete fold of the polypeptide chain, which is quite unlike previously solved viral capsid proteins and is largely alpha-helical. The dimer clustering of subunits produces spikes on the surface of the shell, which consist of radial bundles of four long alpha-helices. Our model implies that the sequence corresponding to the immunodominant region of the core protein lies at the tip of the spike and also explains other properties of the core protein.
机译:乙型肝炎病毒是一种主要的人类病原体,在全球估计有3亿携带者,在慢性感染的情况下可导致肝硬化和肝癌。该病毒由内部核衣壳或核心组成,周围是含有病毒编码表面蛋白的脂质包膜。核心蛋白在细菌中表达时,会组装成核心壳颗粒,与病毒的天然核心极为相似。在这里,我们使用电子显微镜检查将核心蛋白的结构解析为7.4 A分辨率。将来自34张显微照片的约6400个单个粒子的图像进行散焦的不同程度的组合,从而形成二十面体对称。三维图揭示了多肽链的完整折叠,这与以前解析的病毒衣壳蛋白完全不同,并且主要是α-螺旋。亚基的二聚体簇在壳表面产生尖峰,该尖峰由四个长的α螺旋的径向束组成。我们的模型暗示对应于核心蛋白免疫优势区域的序列位于尖峰的尖端,并且还解释了核心蛋白的其他特性。

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