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阐明多阴离子模板病毒样颗粒组装的热力学驱动力。

Elucidating the Thermodynamic Driving Forces of Polyanion-Templated Virus-like Particle Assembly.

出版信息

J Phys Chem B. 2019 Nov 21;123(46):9733-9741. doi: 10.1021/acs.jpcb.9b06258. Epub 2019 Nov 12.

Abstract

A virus in its most simple form is comprised of a protein capsid that surrounds and protects the viral genome. The self-assembly of such structures, however, is a highly complex, multiprotein, multiinteraction process and has been a topic of study for a number of years. This self-assembly process is driven by the (mainly electrostatic) interaction between the capsid proteins (CPs) and the genome as well as by the protein-protein interactions, which primarily rely on hydrophobic interactions. Insight in the thermodynamics that is involved in virus and virus-like particle (VLP) formation is crucial in the detailed understanding of this complex assembly process. Therefore, we studied the assembly of CPs of the cowpea chlorotic mottle virus (CCMV) templated by polyanionic species (cargo), that is, single-stranded DNA (ssDNA), and polystyrene sulfonate (PSS) using isothermal titration calorimetry. By separating the electrostatic CP-cargo interaction from the full assembly interaction, we conclude that CP-CP interactions cause an enthalpy change of -3 to -4 kcal mol CP. Furthermore, we quantify that upon reducing the CP-CP interaction, in the case of CCMV by increasing the pH to 7, the CP-cargo starts to dominate VLP formation. This is highlighted by the three times higher affinity between CP and PSS compared to CP and ssDNA, resulting in the disassembly of CCMV at neutral pH in the presence of PSS to yield PSS-filled VLPs.

摘要

一种最简单形式的病毒由包围并保护病毒基因组的蛋白质衣壳组成。然而,这种结构的自组装是一个高度复杂的、多蛋白的、多相互作用的过程,多年来一直是研究的课题。这种自组装过程是由衣壳蛋白 (CPs) 和基因组之间的(主要是静电)相互作用以及蛋白-蛋白相互作用驱动的,而蛋白-蛋白相互作用主要依赖于疏水相互作用。了解病毒和类似病毒颗粒 (VLP) 形成所涉及的热力学对于深入了解这个复杂的组装过程至关重要。因此,我们使用等温滴定量热法研究了多阴离子物质(货物),即单链 DNA (ssDNA) 和聚苯乙烯磺酸盐 (PSS) 模板化的豇豆花叶病毒 (CCMV) 的 CP 组装。通过将静电 CP-货物相互作用与完整组装相互作用分离,我们得出结论,CP-CP 相互作用导致焓变约为-3 至-4 kcal mol CP。此外,我们定量地发现,在 CP-CP 相互作用降低的情况下,对于 CCMV 来说,通过将 pH 值提高到 7,可以使 CP-货物开始主导 VLP 的形成。这一点通过 CP 与 PSS 之间的亲和力比 CP 与 ssDNA 高三倍来突出,导致在 PSS 存在下 CCMV 在中性 pH 下解体,从而生成 PSS 填充的 VLP。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db9f/6875872/d70ec29b7b2f/jp9b06258_0006.jpg

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