Salomonsson Stina, Ottosson Lars, Säfsten Pär, Hof Danielle, Brauner Hanna, Sunnerhagen Maria, Raats Jos, Wahren-Herlenius Marie
Rheumatology Unit, Department of Medicine, Karolinska Institutet, Karolinska Hospital, CMM L8:04, SE-171 76 Stockholm, Sweden.
J Autoimmun. 2004 Mar;22(2):167-77. doi: 10.1016/j.jaut.2003.11.004.
Autoantibodies against amino acid 200-239 (p200) in the predicted leucine zipper region of the Ro52 protein are associated with congenital heart block, a potentially fatal condition that may affect fetuses of women with Ro52 autoantibodies. To allow detailed studies of the antibodies associated with congenital heart block, B-cell derived combinatorial antibody libraries from patients were screened for Ro52 and p200 specific antibody clones. Two human monoclonal anti-p200 antibody fragments, S3A8 and M4H1, were isolated and analysed with regard to VHand VL gene utilization, somatic mutations and binding properties. Both identified clones recognized recombinant and native intact Ro52, and reacted only with p200 in a set of related Ro52 peptides. The specificity and affinity was confirmed by biosensor measurements. Structural analysis of overlapping peptides revealed increased helicity in the p200 peptide compared to non-recognized peptides, indicating epitope conformation as essential for antibody binding. Both monoclonals produced punctate nuclear and diffuse cytoplasmic staining in human and mouse cell lines. The identified antibodies, which react specifically with the leucine zipper structure of Ro52, will be valuable in further exploration of the mechanisms operating during development of Ro52 antibody-associated congenital heart block.
针对Ro52蛋白预测亮氨酸拉链区域中氨基酸200 - 239(p200)的自身抗体与先天性心脏传导阻滞相关,这是一种可能致命的病症,可能会影响携带Ro52自身抗体的女性的胎儿。为了详细研究与先天性心脏传导阻滞相关的抗体,对来自患者的B细胞衍生组合抗体文库进行筛选,以寻找Ro52和p200特异性抗体克隆。分离出两个人源单克隆抗p200抗体片段S3A8和M4H1,并对其V H和V L基因利用、体细胞突变及结合特性进行分析。两个鉴定出的克隆均识别重组和天然完整的Ro52,并且在一组相关的Ro52肽中仅与p200发生反应。通过生物传感器测量证实了其特异性和亲和力。对重叠肽段的结构分析显示,与未被识别的肽段相比,p200肽段的螺旋度增加,表明表位构象对于抗体结合至关重要。两种单克隆抗体在人和小鼠细胞系中均产生点状核染色和弥漫性胞质染色。所鉴定出的抗体与Ro52的亮氨酸拉链结构特异性反应,对于进一步探索Ro52抗体相关先天性心脏传导阻滞发生过程中的作用机制具有重要价值。