Division of Immunology, The Roslin Institute & R(D)SVS, University of Edinburgh, Easter Bush, Edinburgh EH25 9RG, UK.
The Pirbright Institute, Ash Road, Woking GU24 0NF, UK.
Viruses. 2023 Nov 20;15(11):2279. doi: 10.3390/v15112279.
The avian coronavirus, infectious bronchitis virus (IBV), is an economically important infectious disease affecting chickens, with a diverse range of serotypes found globally. The major surface protein, spike (S), has high diversity between serotypes, and amino acid differences in the S1 sub-unit are thought to be responsible for poor cross-protection afforded by vaccination. Here, we attempt to address this, by using epitope mapping technology to identify shared and serotype-specific immunogenic epitopes of the S glycoprotein of three major circulating strains of IBV, M41, QX, and 4/91, via CLIPS peptide arrays based on peptides from the S1 sub-units. The arrays were screened with sera from chickens immunised with recombinant IBV, based on Beau-R backbone expressing heterologous S, generated in two independent vaccination/challenge trials. The screening of sera from rIBV vaccination experiments led to the identification of 52 immunogenic epitopes on the S1 of M41, QX, and 4/91. The epitopes were assigned into six overlapping epitope binding regions. Based on accessibility and location in the hypervariable regions of S, three sequences, YVYYYQSAFRPPNGWHLQGGAYAVVNSTN, TVGVIKDVYNQSVASI, and AMTVPPAGMSWSVS, were selected for further investigation, and synthetic peptide mimics were recognised by polyclonal sera. These epitopes may have the potential to contribute towards a broader cross-protective IBV vaccine.
禽类冠状病毒,传染性支气管炎病毒(IBV),是一种影响鸡的具有重要经济意义的传染病,在全球范围内发现了多种血清型。主要表面蛋白,刺突(S),在血清型之间具有高度多样性,并且 S1 亚单位中的氨基酸差异被认为是疫苗接种提供的交叉保护作用不佳的原因。在这里,我们试图通过使用表位作图技术来解决这个问题,该技术通过基于 S1 亚单位的肽的 CLIPS 肽阵列来鉴定三种主要循环 IBV 株(M41、QX 和 4/91)的 S 糖蛋白的共有和血清型特异性免疫原性表位。使用基于 Beau-R 骨架表达异源 S 的重组 IBV 免疫鸡的血清筛选阵列,该 S 是在两个独立的接种/攻毒试验中产生的。对 rIBV 接种实验血清的筛选导致在 M41、QX 和 4/91 的 S1 上鉴定出 52 个免疫原性表位。这些表位被分配到六个重叠的表位结合区域。基于 S 的高变区中的可及性和位置,选择了三个序列,即 YVYYYQSAFRPPNGWHLQGGAYAVVNSTN、TVGVIKDVYNQSVASI 和 AMTVPPAGMSWSVS,用于进一步研究,并且多克隆血清识别合成肽模拟物。这些表位可能有潜力为更广泛的 IBV 交叉保护疫苗做出贡献。