Norek Adam, Janda Lubomír
CEITEC - Central European Institute of Technology, Masaryk University, Kamenice 753/5, Brno, 62500, Czech Republic.
Department of Animal Physiology and Immunology, Institute of Experimental Biology, Faculty of Science, Masaryk University, Kamenice 753/5, Brno, 62500, Czech Republic.
Protein Sci. 2017 Apr;26(4):796-806. doi: 10.1002/pro.3125. Epub 2017 Feb 11.
In current work, we used recombinant OspC protein derived from B. afzelii strain BRZ31 in the native homodimeric fold for mice immunization and following selection process to produce three mouse monoclonal antibodies able to bind to variable parts of up to five different OspC proteins. Applying the combination of mass spectrometry assisted epitope mapping and affinity based theoretical prediction we have localized regions responsible for antigen-antibody interactions and approximate epitopes' amino acid composition. Two mAbs (3F4 and 2A9) binds to linear epitopes located in previously described immunogenic regions in the exposed part of OspC protein. The third mAb (2D1) recognises highly conserved discontinuous epitope close to the ligand binding domain 1.
在当前工作中,我们使用了源自阿氏疏螺旋体菌株BRZ31的重组OspC蛋白,其以天然同二聚体折叠形式用于小鼠免疫及后续筛选过程,以产生三种能够结合多达五种不同OspC蛋白可变部分的小鼠单克隆抗体。应用质谱辅助表位作图和基于亲和力的理论预测相结合的方法,我们确定了负责抗原-抗体相互作用的区域以及近似表位的氨基酸组成。两种单克隆抗体(3F4和2A9)结合位于OspC蛋白暴露部分先前描述的免疫原性区域中的线性表位。第三种单克隆抗体(2D1)识别靠近配体结合结构域1的高度保守的不连续表位。