Kumar Pankaj, Shiraz Mohd, Akif Mohd
Laboratory of Structural Biology, Department of Biochemistry, School of Life Sciences, University of Hyderabad, Gachibowli, Hyderabad, Telangana, India.
Biotechnol Appl Biochem. 2023 Apr;70(2):670-687. doi: 10.1002/bab.2389. Epub 2022 Aug 8.
Leptospirosis is a tropical and globally neglected zoonotic disease caused by pathogenic spirochetes, Leptospira. Although the disease has been studied for decades, a potent or effective vaccine is not available so far. Efforts are being made to design an efficient vaccine candidate using different approaches. Immunoinformatics approaches have been proven to be promising in terms of time and cost. Here, we used immunoinformatics and structure-based approaches to evaluate antigenic B- and T-cell epitopes present on the leptospiral lipoproteins (LipL). The promiscuous overlapping epitopes (B-cell, T-cell, interferon (IFN)-γ positive, and non-allergens), which can induce humoral, cell-mediated, and innate immunity, were selected to generate a multiepitope chimeric vaccine. To enhance the vaccine immunogenicity, a Toll-like receptor (TLR) agonist was fused to the vaccine with a suitable linker. The chimeric vaccine structure was predicted for molecular docking studies with immune receptors. Moreover, the stability of the vaccine-immune receptor complexes was analyzed by normal mode analysis (NMA). The potency of the vaccine construct was predicted by the immune simulation tool. The study provides additional information toward constructing peptide-based chimeric vaccines against Leptospira.
钩端螺旋体病是一种由致病性螺旋体——钩端螺旋体引起的热带地区疾病,且在全球范围内受到忽视。尽管对该疾病的研究已有数十年,但迄今为止仍没有有效的疫苗。人们正在尝试使用不同方法设计一种高效的候选疫苗。免疫信息学方法在时间和成本方面已被证明具有前景。在此,我们使用免疫信息学和基于结构的方法来评估钩端螺旋体脂蛋白(LipL)上存在的抗原性B细胞和T细胞表位。选择能够诱导体液免疫、细胞介导免疫和先天免疫的混杂重叠表位(B细胞、T细胞、干扰素(IFN)-γ阳性且无过敏原)来制备多表位嵌合疫苗。为增强疫苗的免疫原性,将一种Toll样受体(TLR)激动剂通过合适的连接子与疫苗融合。预测了嵌合疫苗的结构,用于与免疫受体进行分子对接研究。此外,通过正常模式分析(NMA)分析了疫苗-免疫受体复合物的稳定性。通过免疫模拟工具预测了疫苗构建体的效力。该研究为构建针对钩端螺旋体的基于肽的嵌合疫苗提供了更多信息。