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Combining high-resolution cryo-electron microscopy and mutagenesis to develop cowpea mosaic virus for bionanotechnology

机译:结合高分辨率冷冻电子显微镜和诱变技术开发用于生物技术的cow豆花叶病毒

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摘要

Particles of cowpea mosaic virus (CPMV) have enjoyed considerable success as nanoparticles. The development of a system for producing empty virus-like particles (eVLPs) of the virus, which are non-infectious and have the potential to be loaded with heterologous material, has increased the number of possible applications for CPMV-based particles. However, for this potential to be realised, it was essential to demonstrate that eVLPs were accurate surrogates for natural virus particles, and this information was provided by high-resolution cryo-EM studies of eVLPs. This demonstration has enabled the approaches developed for the production of modified particles developed with natural CPMV particles to be applied to eVLPs. Furthermore, a combination of cryo-EM and mutagenic studies allowed the development of particles which are permeable but which could still assemble efficiently. These particles were shown to be loadable with cobalt, indicating that they can, indeed, be used as nano-containers.
机译:nanoparticles豆花叶病毒颗粒(CPMV)作为纳米颗粒已获得了相当大的成功。用于产生病毒的空的病毒样颗粒(eVLP)的系统的开发增加了基于CPMV的颗粒的可能应用数量,所述空的病毒样颗粒(eVLP)是非感染性的并且具有装载异源材料的潜力。但是,要实现这种潜力,必须证明eVLP是天然病毒颗粒的准确替代品,并且此信息由eVLP的高分辨率冷冻EM研究提供。该演示使开发用于生产用天然CPMV颗粒开发的改性颗粒的方法可以应用于eVLP。此外,低温电磁和诱变研究的结合使得可以形成可渗透但仍能有效组装的颗粒。这些颗粒显示可负载钴,表明它们确实可以用作纳米容器。

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