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Using ion mobility spectrometry-mass spectrometry to decipher the conformational and assembly characteristics of the hepatitis B capsid protein.

机译:使用离子迁移谱 - 质谱法来破译乙型肝炎衣壳蛋白的构象和组装特征。

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摘要

The structural and functional analysis of the core protein of hepatitis B virus is important for a full understanding of the viral life cycle and the development of novel therapeutic agents. The majority of the core protein (CP149) comprises the capsid assembly domain, and the C-terminal region (residues 150-183) is responsible for nucleic acid binding. Protein monomers associate to form dimeric structural subunits, and helices 3 and 4 (residues 50-111 of the assembly domain) have been shown to be important for this as they constitute the interdimer interface. Here, using mass spectrometry coupled with ion mobility spectrometry, we demonstrate the conformational flexibility of the CP149 dimer. Limited proteolysis was used to locate involvement in this feature to the C-terminal region. A genetically fused CP dimer was found to show decreased disorder, consistent with a more restricted C-terminus at the fusion junction. Incubation of CP149 dimer with heteroaryldihydropyrimidine-1, a small molecule known to interfere with the assembly process, was shown to result in oligomers different in shape to the capsid assembly-competent oligomers of the fused CP dimer. We suggest that heteroaryldihydropyrimidine-1 affects the dynamics of CP149 dimer in solution, likely affecting the ratio between assembly active and inactive states. Therefore, assembly of the less dynamic fused dimer is less readily misdirected by heteroaryldihydropyrimidine-1. These studies of the flexibility and oligomerization properties of hepatitis B virus core protein illustrate both the importance of C-terminal dynamics in function and the utility of gas-phase techniques for structural and dynamical biomolecular analysis.
机译:乙型肝炎病毒核心蛋白的结构和功能分析对于全面了解病毒的生命周期和开发新型治疗剂非常重要。大部分核心蛋白(CP149)包含衣壳装配结构域,而C端区域(残基150-183)负责核酸结合。蛋白质单体缔合形成二聚体结构亚基,并且螺旋3和4(装配结构域的残基50-111)对此很重要,因为它们构成了二聚体界面。在这里,结合质谱和离子迁移谱,我们证明了CP149二聚体的构象灵活性。使用有限的蛋白水解作用将参与此功能的位置定位到C端区域。发现遗传融合的CP二聚体显示出减少的紊乱,这与融合连接处更受限的C末端一致。 CP149二聚体与杂芳基二氢嘧啶-1(一种已知会干扰组装过程的小分子)一起孵育会导致寡聚体的形状不同于融合的CP二聚体的衣壳装配能力低聚体。我们建议杂芳基二氢嘧啶-1影响溶液中CP149二聚体的动力学,可能影响组装活性和非活性状态之间的比率。因此,较不动态的稠合二聚体的组装不易被杂芳基二氢嘧啶-1误导。这些对乙型肝炎病毒核心蛋白的柔韧性和寡聚特性的研究表明,C末端动力学在功能上的重要性以及气相技术在结构和动力学生物分子分析中的应用。

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