Laboratory of Aquatic Animal Diseases, Institute of Animal Medicine, College of Veterinary Medicine, Gyeongsang National University, Jinju, 660-701, South Korea.
Inland Aquaculture Research Center, NIFS, Changwon, 645-806, South Korea.
Mol Immunol. 2018 Jul;99:30-38. doi: 10.1016/j.molimm.2018.04.006. Epub 2018 Apr 19.
Variable lymphocyte receptors B (VLRBs) are non-immunoglobulin components of the humoral immune system in jawless vertebrates including hagfish (Eptatretus burgeri) and lamprey (Petromyzon marinus). Hagfish VLRBs consist of leucine rich repeat (LRR) modules with a superhydrophobic C-terminal tail, the latter of which leads to extremely low expression levels in recombinant protein technology. Here, we present an artificially oligomerized VLRB (arVLRB) that conjugates via the C4bp oligomerization domain derived from human C4b-binding protein (hC4bp) rather than the superhydrophobic tail. The resulting arVLRB had a tightly multimerized form with seven monomeric VLRB arms and showed high expression and secretion levels in a mammalian expression system. To isolate antigen-specific arVLRB, we constructed large VLRB libraries from hagfish immunized with the fish pathogen, viral hemorrhagic septicemia virus (VHSV). The selected arVLRBs were found to recognize various types of antigens, including the recombinant target protein, purified viruses, and progeny viruses, with high antigen binding abilities and specificities. We also performed in vitro affinity maturation of the arVLRBs through LRRCT mutagenesis, and found that this enhanced their antigen-binding properties by at least 125-fold. Our epitope mapping analysis revealed that DWDTPL, which is located in a region conserved among the glycoproteins of all VHSV isolates, is the recognition epitope of the arVLRBs. Thus, our newly developed arVLRB could prove useful in the development of universal diagnostic tools and/or therapeutic agents for the virus. Together, our novel findings provide valuable insights into hagfish VLRB and its potential use as a novel alternative to conventional antibodies for biotechnological applications.
可变淋巴细胞受体 B(VLRB)是非免疫球蛋白成分的体液免疫系统在无颚脊椎动物包括盲鳗(Eptatretus burgeri)和七鳃鳗(Petromyzon marinus)。盲鳗 VLRB 组成的亮氨酸丰富重复(LRR)模块与一个超疏水性 C 端尾巴,后者导致极低的表达水平在重组蛋白技术。在这里,我们提出了一个人工寡聚 VLRB(arVLRB)的共轭通过 C4bp 寡聚化域来源于人 C4b 结合蛋白(hC4bp)而不是超疏水性尾巴。由此产生的 arVLRB 有一个紧密的多聚体形式与七个单体 VLRB 臂和表现出高水平的表达和分泌在哺乳动物表达系统。为了分离抗原特异性 arVLRB,我们构建了从盲鳗鱼类病原体免疫大 VLRB 文库,病毒性出血性败血症病毒(VHSV)。选定的 arVLRB 被发现识别各种类型的抗原,包括重组靶蛋白、纯化的病毒和后代病毒,具有高的抗原结合能力和特异性。我们还进行了体外亲和力成熟的 arVLRB 通过 LRRCT 突变,发现这增强了他们的抗原结合特性至少 125 倍。我们的表位作图分析表明,DWDTPL,这是位于一个区域保守的所有 VHSV 分离株的糖蛋白,是识别表位的 arVLRB。因此,我们新开发的 arVLRB 可能有助于发展通用诊断工具和/或治疗剂的病毒。总之,我们的新发现提供了有价值的见解盲鳗 VLRB 及其作为一种新型替代传统抗体生物技术应用。