Strods Arnis, Ose Velta, Bogans Janis, Cielens Indulis, Kalnins Gints, Radovica Ilze, Kazaks Andris, Pumpens Paul, Renhofa Regina
Latvian Biomedical Research and Study Centre, Ratsupites Str. 1 k-1, LV-1067, Riga, Latvia.
Sci Rep. 2015 Jun 26;5:11639. doi: 10.1038/srep11639.
Hepatitis B virus (HBV) core (HBc) virus-like particles (VLPs) are one of the most powerful protein engineering tools utilised to expose immunological epitopes and/or cell-targeting signals and for the packaging of genetic material and immune stimulatory sequences. Although HBc VLPs and their numerous derivatives are produced in highly efficient bacterial and yeast expression systems, the existing purification and packaging protocols are not sufficiently optimised and standardised. Here, a simple alkaline treatment method was employed for the complete removal of internal RNA from bacteria- and yeast-produced HBc VLPs and for the conversion of these VLPs into empty particles, without any damage to the VLP structure. The empty HBc VLPs were able to effectively package the added DNA and RNA sequences. Furthermore, the alkaline hydrolysis technology appeared efficient for the purification and packaging of four different HBc variants carrying lysine residues on the HBc VLP spikes. Utilising the introduced lysine residues and the intrinsic aspartic and glutamic acid residues exposed on the tips of the HBc spikes for chemical coupling of the chosen peptide and/or nucleic acid sequences ensured a standard and easy protocol for the further development of versatile HBc VLP-based vaccine and gene therapy applications.
乙型肝炎病毒(HBV)核心(HBc)病毒样颗粒(VLPs)是用于暴露免疫表位和/或细胞靶向信号以及包装遗传物质和免疫刺激序列的最强大的蛋白质工程工具之一。尽管HBc VLPs及其众多衍生物是在高效的细菌和酵母表达系统中产生的,但现有的纯化和包装方案并未得到充分优化和标准化。在此,采用一种简单的碱性处理方法,可从细菌和酵母产生的HBc VLPs中完全去除内部RNA,并将这些VLPs转化为空颗粒,而不会对VLP结构造成任何损害。空的HBc VLPs能够有效地包装添加的DNA和RNA序列。此外,碱性水解技术对于纯化和包装在HBc VLP刺突上带有赖氨酸残基的四种不同HBc变体似乎是有效的。利用引入的赖氨酸残基以及在HBc刺突尖端暴露的内在天冬氨酸和谷氨酸残基进行所选肽和/或核酸序列的化学偶联,确保了用于进一步开发通用的基于HBc VLP的疫苗和基因治疗应用的标准且简便的方案。