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Synthetic oligonucleotide antigens modified with locked nucleic acids detect disease specific antibodies.


ABSTRACT: New techniques to detect and quantify antibodies to nucleic acids would provide a significant advance over current methods, which often lack specificity. We investigate the potential of novel antigens containing locked nucleic acids (LNAs) as targets for antibodies. Particularly, employing molecular dynamics we predict optimal nucleotide composition for targeting DNA-binding antibodies. As a proof of concept, we address a problem of detecting anti-DNA antibodies that are characteristic of systemic lupus erythematosus, a chronic autoimmune disease with multiple manifestations. We test the best oligonucleotide binders in surface plasmon resonance studies to analyze binding and kinetic aspects of interactions between antigens and target DNA. These DNA and LNA/DNA sequences showed improved binding in enzyme-linked immunosorbent assay using human samples of pediatric lupus patients. Our results suggest that the novel method is a promising tool to create antigens for research and point-of-care monitoring of anti-DNA antibodies.

SUBMITTER: Samuelsen SV 

PROVIDER: S-EPMC5075775 | biostudies-literature | 2016 Oct

REPOSITORIES: biostudies-literature

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Synthetic oligonucleotide antigens modified with locked nucleic acids detect disease specific antibodies.

Samuelsen Simone V SV   Solov'yov Ilia A IA   Balboni Imelda M IM   Mellins Elizabeth E   Nielsen Christoffer Tandrup CT   Heegaard Niels H H NH   Astakhova Kira K  

Scientific reports 20161024


New techniques to detect and quantify antibodies to nucleic acids would provide a significant advance over current methods, which often lack specificity. We investigate the potential of novel antigens containing locked nucleic acids (LNAs) as targets for antibodies. Particularly, employing molecular dynamics we predict optimal nucleotide composition for targeting DNA-binding antibodies. As a proof of concept, we address a problem of detecting anti-DNA antibodies that are characteristic of system  ...[more]

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