Faculty of Biology, Department of Virology, Lomonosov Moscow State University, Moscow, Russia.
Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow, Russia.
PLoS One. 2021 Jul 28;16(7):e0255378. doi: 10.1371/journal.pone.0255378. eCollection 2021.
The present work addresses the thermal remodelling of flexible plant viruses with a helical structure and virus-like particles (VLPs). Here, for the first time, the possibility of filamentous Alternanthera mosaic virus (AltMV) virions' thermal transition into structurally modified spherical particles (SP) has been demonstrated. The work has established differences in formation conditions of SP from virions (SPV) and VLPs (SPVLP) that are in accordance with structural data (on AltMV virions and VLPs). SP originate from AltMV virions through an intermediate stage. However, the same intermediate stage was not detected during AltMV VLPs' structural remodelling. According to the biochemical analysis, AltMV SPV consist of protein and do not include RNA. The structural characterisation of AltMV SPV/VLP by circular dichroism, intrinsic fluorescence spectroscopy and thioflavin T fluorescence assay has been performed. AltMV SPV/VLP adsorption properties and the availability of chemically reactive surface amino acids have been analysed. The revealed characteristics of AltMV SPV/VLP indicate that they could be applied as protein platforms for target molecules presentation and for the design of functionally active complexes.
本工作针对具有螺旋结构和病毒样颗粒 (VLP) 的柔性植物病毒的热重塑进行了研究。在这里,首次证明了丝状Alternanthera mosaic 病毒 (AltMV) 病毒粒子的热转变为结构修饰的球形颗粒 (SP) 的可能性。该工作确定了 SP 从病毒粒子 (SPV) 和 VLP (SPVLP) 形成条件的差异,这些差异与结构数据(关于 AltMV 病毒粒子和 VLP)一致。SP 来源于 AltMV 病毒粒子,经历了一个中间阶段。然而,在 AltMV VLP 的结构重塑过程中,没有检测到相同的中间阶段。根据生化分析,AltMV SPV 由蛋白质组成,不包含 RNA。通过圆二色性、内源荧光光谱和硫黄素 T 荧光测定法对 AltMV SPV/VLP 的结构特征进行了研究。分析了 AltMV SPV/VLP 的吸附特性和化学活性表面氨基酸的可用性。所揭示的 AltMV SPV/VLP 特性表明,它们可作为靶分子呈现的蛋白质平台和功能活性复合物的设计应用。