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The crystal structure of the human hepatitis B virus capsid.

机译:人类乙型肝炎病毒衣壳的晶体结构。

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Hepatitis B is a small enveloped DNA virus that poses a major hazard to human health. The crystal structure of the T = 4 capsid has been solved at 3.3 A resolution, revealing a largely helical protein fold that is unusual for icosahedral viruses. The monomer fold is stabilized by a hydrophobic core that is highly conserved among human viral variants. Association of two amphipathic alpha-helical hairpins results in formation of a dimer with a four-helix bundle as the major central feature. The capsid is assembled from dimers via interactions involving a highly conserved region near the C terminus of the truncated protein used for crystallization. The major immunodominant region lies at the tips of the alpha-helical hairpins that form spikes on the capsid surface.
机译:乙型肝炎是一种小包膜DNA病毒,对人类健康构成重大危害。 T = 4衣壳的晶体结构已在3.3 A的分辨率下解析,揭示了螺旋形蛋白质折叠,这对二十面体病毒是不寻常的。单体折叠通过疏水核稳定,该疏水核在人病毒变异体中高度保守。两个两亲性α-螺旋发夹的结合导致形成以四螺旋束为主要中心特征的二聚体。衣壳是通过二聚体通过相互作用而组装的,该相互作用涉及用于结晶的截短蛋白C末端附近的高度保守区域。主要的免疫优势区域位于在衣壳表面形成尖峰的α-螺旋发夹的末端。

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