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Tandem fusion of hepatitis B core antigen allows assembly of virus-like particles in bacteria and plants with enhanced capacity to accommodate foreign proteins

机译:乙型肝炎核心抗原的串联融合允许在细菌和植物中组装病毒样颗粒,其具有增强的容纳外来蛋白质的能力

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摘要

The core protein of the hepatitis B virus, HBcAg, assembles into highly immunogenic viruslike particles (HBc VLPs) when expressed in a variety of heterologous systems. Specifically, the major insertion region (MIR) on the HBcAg protein allows the insertion of foreign sequences, which are then exposed on the tips of surface spike structures on the outside of the assembled particle. Here, we present a novel strategy which aids the display of whole proteins on the surface of HBc particles. This strategy, named tandem core, is based on the production of the HBcAg dimer as a single polypeptide chain by tandem fusion of two HBcAg open reading frames. This allows the insertion of large heterologous sequences in only one of the two MIRs in each spike, without compromising VLP formation. We present the use of tandem core technology in both plant and bacterial expression systems. The results show that tandem core particles can be produced with unmodified MIRs, or with one MIR in each tandem dimer modified to contain the entire sequence of GFP or of a camelid nanobody. Both inserted proteins are correctly folded and the nanobody fused to the surface of the tandem core particle (which we name tandibody) retains the ability to bind to its cognate antigen. This technology paves the way for the display of natively folded proteins on the surface of HBc particles either through direct fusion or through non-covalent attachment via a nanobody.
机译:当在多种异源系统中表达时,乙型肝炎病毒的核心蛋白HBcAg会组装成高度免疫原性的病毒样颗粒(HBc VLP)。具体而言,HBcAg蛋白上的主要插入区(MIR)允许插入外源序列,然后将其暴露在组装粒子外部的表面尖峰结构的尖端。在这里,我们提出了一种新颖的策略,可帮助在HBc颗粒表面上展示完整的蛋白质。这种称为串联核心的策略,是基于两个HBcAg开放阅读框的串联融合,以单条多肽链形式生产HBcAg二聚体。这允许在每个尖峰的两个MIR中仅一个插入大的异源序列,而不会影响VLP的形成。我们目前在植物和细菌表达系统中使用串联核心技术。结果表明,可以用未修饰的MIR或在每个串联二聚体中修饰一个以包含GFP或骆驼科动物纳米体的整个序列的MIR来生产串联核心颗粒。两个插入的蛋白质都正确折叠,并且与串联核心颗粒表面融合的纳米抗体(我们称为tandibody)保留了与其同源抗原结合的能力。这项技术为通过直接融合或通过纳米体的非共价结合在HBc颗粒表面展示天然折叠的蛋白质铺平了道路。

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