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High-resolution mass spectrometry of viral assemblies: Molecular composition and stability of dimorphic hepatitis B virus capsids

机译:病毒组装体的高分辨率质谱:二型乙型肝炎病毒衣壳的分子组成和稳定性

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Hepatitis B virus (HBV) is a major human pathogen. In addition to its importance in human health, there is growing interest in adapting HBV and other viruses for drug delivery and other nanotechnological applications. In both contexts, precise biophysical characterization of these large macromolecular particles is fundamental. HBV capsids are unusual in that they exhibit two distinct icosahedral geometries, nominally composed of 90 and 120 dimers with masses of ≈3 and ≈4 MDa, respectively. Here, a mass spectrometric approach was used to determine the masses of both capsids to within 0.1%. It follows that both lattices are complete, consisting of exactly 180 and 240 subunits. Nanoindentation experiments by atomic-force microscopy indicate that both capsids have similar stabilities. The data yielded a Young's modulus of 0.4 GPa. This experimental approach, anchored on very precise and accurate mass measurements, appears to hold considerable potential for elucidating the assembly of viruses and other macromolecular particles.
机译:乙型肝炎病毒(HBV)是主要的人类病原体。除了其在人类健康中的重要性外,人们对使HBV和其他病毒适应药物输送和其他纳米技术应用的兴趣日益浓厚。在这两种情况下,这些大分子颗粒的精确生物物理表征都是至关重要的。 HBV衣壳是不寻常的,因为它们表现出两个不同的二十面体几何形状,名义上由90和120个二聚体组成,质量分别为≈3和≈4MDa。在这里,使用质谱法将两个衣壳的质量确定在0.1%以内。因此,两个晶格都是完整的,分别由180和240个亚基组成。通过原子力显微镜进行的纳米压痕实验表明,两个衣壳具有相似的稳定性。数据得出的杨氏模量为0.4 GPa。这种基于非常精确准确的质量测量的实验方法,似乎具有阐明病毒和其他大分子颗粒组装的巨大潜力。

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