Li Min, Yu Mingkai, Yuan Yigang, Li Danyang, Ye Daijiao, Zhao Min, Lin Zihan, Shi Liuzhi
Medical Research Center, The First Affiliated Hospital of Wenzhou Medical University, 1 Xuefubei Street, Ouhai District, Wenzhou, Zhejiang Province, China.
School of Life Science and Technology, Southeast University, Xinjiekou Street, Xuanwu District, Nanjing, Jiangsu Province, China.
Heliyon. 2024 Mar 8;10(5):e27417. doi: 10.1016/j.heliyon.2024.e27417. eCollection 2024 Mar 15.
() is a common bacterium that can cause iatrogenic infection. Recently, the rise of antibiotic resistance among strains is one key factor associated with antibiotic treatment failure. Hencefore, there is an urgent need for effective vaccines. This study aimed to design a multi-epitope vaccine (MEV) candidate against by utilizing an immunoinformatics method. In this study, we obtained 15 cytotoxic T lymphocyte epitopes, 10 helper T lymphocyte epitopes, 6 linear B-cell epitopes, and 2 conformational B-cell epitopes for further research. Then, we designed a multi-epitope vaccine composed of a total of 743 amino acids, containing the epitopes linked by GPGPG flexible links and an EAAAK linker to the Cholera Toxin Subunit B coadjuvant. The observed properties of the MEV, including non-allergenicity, high antigenicity, and hydrophilicity, are noteworthy. The improvements in the tertiary structure through structural refinement and disulfide bonding, coupled with promising molecular interactions revealed by molecular dynamics simulations with TLR4, position the MEV as a strong candidate for further investigation against .
()是一种可导致医源性感染的常见细菌。最近,该菌株抗生素耐药性的上升是与抗生素治疗失败相关的一个关键因素。因此,迫切需要有效的疫苗。本研究旨在利用免疫信息学方法设计一种针对()的多表位疫苗(MEV)候选物。在本研究中,我们获得了15个细胞毒性T淋巴细胞表位、10个辅助性T淋巴细胞表位、6个线性B细胞表位和2个构象性B细胞表位以供进一步研究。然后,我们设计了一种由总共743个氨基酸组成的多表位疫苗,其中包含通过GPGPG柔性连接子连接的表位以及与霍乱毒素亚基B佐剂相连的EAAAK连接子。MEV所观察到的特性,包括无致敏性、高抗原性和亲水性,都值得关注。通过结构优化和二硫键形成对三级结构的改进,再加上与TLR4的分子动力学模拟所揭示的有前景的分子相互作用,使MEV成为针对()进行进一步研究的有力候选物。