College of Animal Science and Technology, Heilongjiang Bayi Agricultural University, Daqing 163319, China.
College of Life Science and Technology, Heilongjiang Bayi Agricultural University, Daqing 163319, China.
Res Vet Sci. 2021 May;136:422-429. doi: 10.1016/j.rvsc.2020.12.019. Epub 2020 Dec 29.
Glyceraldehyde-3-phosphate dehydrogenase C (GapC) of Streptococcus dysgalactiae (S. dysgalactiae) is a highly conserved surface protein that can induce a protective immune response against S. dysgalactiae infection. To investigate the immune response and protective efficacy induced by epitope-vaccines against S. dysgalactiae infection, we constructed epitope-vaccines GTB1, GB1B2, and GTB1B2 using a T cell epitope (GapC, abbreviated as GT) and two B cell epitopes (GapC, abbreviated as GB1, and GapC, abbreviated as GB2), which were identified in GapC of S. dysgalactiae in tandem by a GSGSGS linker. BALB/c mice were immunized via an intramuscular injection with the epitope vaccines. The levels of the cytokines, IFN-γ, IL-4, and IL-17, secreted by splenic lymphocytes and the antibody levels in the sera of the immunized mice were detected by ELISA. The immunized mice were subsequently challenged with S. dysgalactiae, and the bacterial colonization in the immunized-mouse organs was examined using the plate counting method. The results showed that the level of the cytokines induced by GTB1B2 was lower than that induced by GapC, but higher than that induced by other epitope vaccines. The level of IgG induced by GTB1B2 was lower than that induced by GapC, but higher than the levels induced by other epitope vaccines. The bacterial colonization numbers in the organs of the mice immunized with GTB1B2 were higher those of the mice immunized with GapC, but significantly lower than those from the mice immunized with other epitope-vaccines. Our results demonstrated that the T cell and B cell epitopes in the epitope-vaccines worked synergistically against bacterial challenge. The multi-epitope vaccine, GTB1B2, could induce stronger cellular and humoral immune responses, and provide a better protective effect against S. dysgalactiae infection.
无乳链球菌甘油醛-3-磷酸脱氢酶 C(GapC)是一种高度保守的表面蛋白,可诱导针对无乳链球菌感染的保护性免疫应答。为了研究针对无乳链球菌感染的表位疫苗引起的免疫应答和保护效果,我们使用串联的 T 细胞表位(GapC,简称 GT)和两个 B 细胞表位(GapC,简称 GB1 和 GapC,简称 GB2)构建了表位疫苗 GTB1、GB1B2 和 GTB1B2,这些表位是通过 GSGSGS 接头在无乳链球菌 GapC 中鉴定的。BALB/c 小鼠通过肌肉注射接种表位疫苗。通过 ELISA 检测脾淋巴细胞分泌的细胞因子 IFN-γ、IL-4 和 IL-17 水平以及免疫小鼠血清中的抗体水平。随后用无乳链球菌攻毒免疫小鼠,平板计数法检测免疫器官中细菌定植情况。结果表明,GTB1B2 诱导的细胞因子水平低于 GapC,但高于其他表位疫苗。GTB1B2 诱导的 IgG 水平低于 GapC,但高于其他表位疫苗。GTB1B2 免疫小鼠各器官的细菌定植数高于 GapC 免疫小鼠,但明显低于其他表位疫苗免疫小鼠。我们的结果表明,表位疫苗中的 T 细胞和 B 细胞表位协同作用抵抗细菌攻击。多表位疫苗 GTB1B2 可诱导更强的细胞和体液免疫应答,对无乳链球菌感染提供更好的保护效果。