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首页> 外文期刊>The Journal of biological chemistry >Dengue and Zika virus capsid proteins bind to membranes and self-assemble into liquid droplets with nucleic acids
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Dengue and Zika virus capsid proteins bind to membranes and self-assemble into liquid droplets with nucleic acids

机译:登革热和Zika病毒衣壳蛋白与膜结合并自组装成液滴与核酸

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Dengue virus (DENV) and Zika virus (ZIKV) capsid proteins efficiently recruit and surround the viral RNA at the endoplasmic reticulum (ER) membrane to yield nascent viral particles. However, little is known either about the molecular mechanisms by which multiple copies of capsid proteins assemble into nucleocapsids (NCs) or how the NC is recruited and wrapped by the ER membrane during particle morphogenesis. Here, we measured relevant interactions concerning this viral process using purified DENV and ZIKV capsid proteins, membranes mimicking the ER lipid composition, and nucleic acids in in vitro conditions to understand the biophysical properties of the RNA genome encapsidation process. We found that both ZIKV and DENV capsid proteins bound to liposomes at liquid-disordered phase regions, docked exogenous membranes, and RNA molecules. Liquid–liquid phase separation is prone to occur when positively charged proteins interact with nucleic acids, which is indeed the case for the studied capsids. We characterized these liquid condensates by measuring nucleic acid partition constants and the extent of water dipolar relaxation, observing a cooperative process for the formation of the new phase that involves a distinct water organization. Our data support a new model in which capsid–RNA complexes directly bind the ER membrane, seeding the process of RNA recruitment for viral particle assembly. These results contribute to our understanding of the viral NC formation as a stable liquid–liquid phase transition, which could be relevant for dengue and Zika gemmation, opening new avenues for antiviral intervention.
机译:登革热病毒(DENV)和ZIKA病毒(ZIKV)Capsid蛋白有效募集并围绕内质网(ER)膜的病毒RNA,以产生新生的病毒颗粒。然而,关于胶囊蛋白的多个拷贝组合成核衣壳(NCS)的分子机制,或者在颗粒形态发生期间,通过ER膜征集和包裹的分子机制几乎是众所周知的。在这里,我们使用纯化的Denv和Zikv衣壳蛋白,模拟ER脂质组合物的膜,在体外条件下模仿ER脂质组合物的膜来测量相关的相互作用,以了解RNA基因组封装过程的生物物理性质。我们发现ZIKV和DENV衣壳蛋白在液体无序相区域,停靠外源膜和RNA分子中结合到脂质体。当带正电荷的蛋白质与核酸相互作用时,易于发生液 - 液相分离,这实际上是所研究的衣壳的情况。我们通过测量核酸分配常数和水偶极弛豫的程度来表征这些液体缩合物,观察到形成涉及不同水组织的新阶段的合作过程。我们的数据支持一种新型模型,其中Capsid-RNA复合物直接染色ER膜,播种用于病毒颗粒组件的RNA募集过程。这些结果有助于我们对病毒NC形成的理解,作为稳定的液体液相过渡,这可能与登革灭和Zika发芽有关,为抗病毒干预开辟了新的途径。

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