Zahmanova Gergana, Mazalovska Milena, Takova Katerina, Toneva Valentina, Minkov Ivan, Peyret Hadrien, Lomonossoff George
Department of Plant Physiology and Molecular Biology, University of Plovdiv, 4000 Plovdiv, Bulgaria.
Center of Plant Systems Biology and Biotechnology, 4000 Plovdiv, Bulgaria.
Life (Basel). 2021 Jan 17;11(1):64. doi: 10.3390/life11010064.
The core antigen of hepatitis B virus (HBcAg) is capable of self-assembly into virus-like particles (VLPs) when expressed in a number of heterologous systems. Such VLPs are potential carriers of foreign antigenic sequences for vaccine design. In this study, we evaluated the production of chimeric HBcAg VLPs presenting a foreign epitope on their surface, the 551-607 amino acids (aa) immunological epitope of the ORF2 capsid protein of hepatitis E virus. A chimeric construct was made by the insertion of 56 aa into the immunodominant loop of the HBcAg. The sequences encoding the chimera were inserted into the pEAQ- vector and infiltrated into leaves. The plant-expressed chimeric HBcHEV ORF2 551-607 protein was recognized by an anti-HBcAg mAb and anti-HEV IgG positive swine serum. Electron microscopy showed that plant-produced chimeric protein spontaneously assembled into "knobbly" ~34 nm diameter VLPs. This study shows that HBcAg is a promising carrier platform for the neutralizing epitopes of hepatitis E virus (HEV) and the chimeric HBcAg/HEV VLPs could be a candidate for a bivalent vaccine.
乙型肝炎病毒(HBcAg)的核心抗原在多种异源系统中表达时能够自组装成病毒样颗粒(VLPs)。此类VLPs是疫苗设计中外源抗原序列的潜在载体。在本研究中,我们评估了在其表面呈现外源表位(戊型肝炎病毒ORF2衣壳蛋白的551 - 607个氨基酸(aa)免疫表位)的嵌合HBcAg VLPs的产生情况。通过将56个氨基酸插入HBcAg的免疫显性环中构建了嵌合结构。将编码嵌合体的序列插入pEAQ - 载体并渗入叶片。植物表达的嵌合HBcHEV ORF2 551 - 607蛋白可被抗HBcAg单克隆抗体和抗HEV IgG阳性猪血清识别。电子显微镜显示植物产生的嵌合蛋白自发组装成直径约34 nm的“多瘤的”VLPs。本研究表明,HBcAg是戊型肝炎病毒(HEV)中和表位的一个有前景的载体平台,且嵌合HBcAg/HEV VLPs可能是一种二价疫苗的候选物。