Molecular and structural basis of anti-DNA antibody specificity for pyrrolated proteins

被引:0
作者
Yusuke Anan
Masanori Itakura
Tatsuya Shimoda
Kosuke Yamaguchi
Peng Lu
Koji Nagata
Jinhua Dong
Hiroshi Ueda
Koji Uchida
机构
[1] Graduate School of Agricultural and Life Sciences,Laboratory of Food Chemistry and Life Science
[2] The University of Tokyo,Laboratory of Food Biotechnology and Structural Biology
[3] Graduate School of Agricultural and Life Sciences,Laboratory for Chemistry and Life Science
[4] The University of Tokyo,School of Rehabilitation Sciences and Engineering
[5] Institute of Innovative Research,undefined
[6] Tokyo Institute of Technology,undefined
[7] University of Health and Rehabilitation Sciences,undefined
[8] Japan Agency for Medical Research and Development,undefined
[9] CREST,undefined
来源
Communications Biology | / 7卷
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摘要
Anti-DNA antibodies (Abs), serological hallmarks of systemic lupus erythematosus (SLE) and markers for diagnosis and disease activity, show a specificity for non-nucleic acid molecules, such as N-pyrrolated proteins (pyrP) containing Nε-pyrrole-L-lysine (pyrK) residues. However, the detailed mechanism for the binding of anti-DNA Abs to pyrP remains unknown. In the present study, to gain structural insights into the dual-specificity of anti-DNA Abs, we used phage display to obtain DNA-binding, single-chain variable fragments (scFvs) from SLE-prone mice and found that they also cross-reacted with pyrP. It was revealed that a variable heavy chain (VH) domain is sufficient for the recognition of DNA/pyrP. Identification of an antigenic sequence containing pyrK in pyrP suggested that the presence of both pyrK and multiple acidic amino acid residues plays important roles in the electrostatic interactions with the Abs. X-ray crystallography and computer-predicted simulations of the pyrK-containing peptide-scFv complexes identified key residues of Abs involved in the interaction with the antigens. These data provide a mechanistic insight into the molecular basis of the dual-specificity of the anti-DNA Abs and provide a basis for therapeutic intervention against SLE.
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