Jerlström P G, Talay S R, Valentin-Weigand P, Timmis K N, Chhatwal G S
Department of Microbiology, Technical University/GBF-National Research Centre for Biotechnology, Braunschweig, Germany.
Infect Immun. 1996 Jul;64(7):2787-93. doi: 10.1128/iai.64.7.2787-2793.1996.
The beta-antigen of the c protein complex of group B streptococci contains two immunoglobulin A (IgA)-binding domains called A and B. A 73-amino-acid segment in domain A is responsible for most of the IgA-binding activity. To identify the IgA binding motif, the 73-amino-acid domain was divided into 60 14-amino-acid overlapping peptides spot synthesized onto a cellulose membrane. A 20-residue putative antigenic epitope was identified and expressed as a fusion protein. The fusion protein was purified by fast protein liquid chromatography and used to raise rabbit antiserum. By use of a membrane with spot-synthesized peptide amino acids of decreasing length (from 14 to 6 amino acids), the major antigenic epitope recognized by the anti-fusion protein antibodies was mapped to motif MLKKIE. Anti-fusion protein antibodies inhibited the binding of IgA to group B streptococci. This inhibition could be blocked by the peptide containing the motif MLKKIE. These results indicate that the motif MLKKIE is located in the IgA-binding site. The IgA-binding domain of beta-antigen from three group B streptococcal strains reacted with the anti-fusion protein antibodies, and their coding sequences gave positive signals in Southern hybridization. The sequences of beta-antigen from these strains were amplified by PCR, and sequence analysis showed them to be identical. The results indicate that the motif MLKKIE is required for IgA binding and is present in different group B streptococcal strains.
B组链球菌c蛋白复合物的β抗原含有两个称为A和B的免疫球蛋白A(IgA)结合结构域。结构域A中的一个73个氨基酸的片段负责大部分IgA结合活性。为了鉴定IgA结合基序,将73个氨基酸的结构域分成60个14个氨基酸的重叠肽,点合成在纤维素膜上。鉴定出一个20个残基的推定抗原表位并将其表达为融合蛋白。通过快速蛋白质液相色谱法纯化融合蛋白,并用于制备兔抗血清。通过使用具有点合成的长度递减的肽氨基酸(从14个氨基酸到6个氨基酸)的膜,将抗融合蛋白抗体识别的主要抗原表位定位到基序MLKKIE。抗融合蛋白抗体抑制IgA与B组链球菌的结合。这种抑制作用可以被含有基序MLKKIE的肽阻断。这些结果表明基序MLKKIE位于IgA结合位点。来自三株B组链球菌菌株的β抗原的IgA结合结构域与抗融合蛋白抗体发生反应,并且它们的编码序列在Southern杂交中给出阳性信号。通过PCR扩增这些菌株的β抗原序列,序列分析表明它们是相同的。结果表明基序MLKKIE是IgA结合所必需的,并且存在于不同的B组链球菌菌株中。