Cargando…

Role of Structure-Based Changes due to Somatic Mutation in Highly Homologous DNA-Binding and DNA-Hydrolyzing Autoantibodies Exemplified by A23P Substitution in the VH Domain

Anti-DNA autoantibodies are responsible for tissue injury in lupus. A subset of DNA-specific antibodies capable of DNA cleavage can be even more harmful after entering the living cells by destroying nuclear DNA. Origins of anti-DNA autoantibodies are not fully understood, and the mechanism of induct...

Descripción completa

Detalles Bibliográficos
Autores principales: Kozyr, A. V., Kolesnikov, A. V., Khlyntseva, A. E., Bogun, A. G., Savchenko, G. A., Shemyakin, I. G., Gabibov, A. G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3502752/
https://www.ncbi.nlm.nih.gov/pubmed/23193442
http://dx.doi.org/10.1155/2012/683829
_version_ 1782250385089495040
author Kozyr, A. V.
Kolesnikov, A. V.
Khlyntseva, A. E.
Bogun, A. G.
Savchenko, G. A.
Shemyakin, I. G.
Gabibov, A. G.
author_facet Kozyr, A. V.
Kolesnikov, A. V.
Khlyntseva, A. E.
Bogun, A. G.
Savchenko, G. A.
Shemyakin, I. G.
Gabibov, A. G.
author_sort Kozyr, A. V.
collection PubMed
description Anti-DNA autoantibodies are responsible for tissue injury in lupus. A subset of DNA-specific antibodies capable of DNA cleavage can be even more harmful after entering the living cells by destroying nuclear DNA. Origins of anti-DNA autoantibodies are not fully understood, and the mechanism of induction of DNA-cleaving activity remains speculative. The autoantibody BV04-01 derived from lupus-prone mouse is the only DNA-hydrolyzing immunoglobulin with known 3D structure. Identification and analysis of antibodies homologous to BV04-01 may help to understand molecular bases and origins of DNA-cleaving activity of autoantibodies. BLAST search identified murine anti-DNA autoantibody MRL-4 with sequences of variable region genes highly homologous to those of autoantibody BV04-01. Despite significant homology to BV04-01, not only MRL-4 had no DNA-cleaving activity, but also reversion of its unusual P23 mutation to the germline alanine resulted in a dramatic loss of affinity to DNA. Contrary to this effect, transfer of the P23 mutation to the BV04-01 has resulted in a significant drop in DNA binding and almost complete loss of catalytic activity. In the present paper we analyzed the properties of two homologous autoantibodies and mutants thereof and discussed the implications of unusual somatic mutations for the development of autoantibodies with DNA-binding and DNA-hydrolyzing activity.
format Online
Article
Text
id pubmed-3502752
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Hindawi Publishing Corporation
record_format MEDLINE/PubMed
spelling pubmed-35027522012-11-28 Role of Structure-Based Changes due to Somatic Mutation in Highly Homologous DNA-Binding and DNA-Hydrolyzing Autoantibodies Exemplified by A23P Substitution in the VH Domain Kozyr, A. V. Kolesnikov, A. V. Khlyntseva, A. E. Bogun, A. G. Savchenko, G. A. Shemyakin, I. G. Gabibov, A. G. Autoimmune Dis Research Article Anti-DNA autoantibodies are responsible for tissue injury in lupus. A subset of DNA-specific antibodies capable of DNA cleavage can be even more harmful after entering the living cells by destroying nuclear DNA. Origins of anti-DNA autoantibodies are not fully understood, and the mechanism of induction of DNA-cleaving activity remains speculative. The autoantibody BV04-01 derived from lupus-prone mouse is the only DNA-hydrolyzing immunoglobulin with known 3D structure. Identification and analysis of antibodies homologous to BV04-01 may help to understand molecular bases and origins of DNA-cleaving activity of autoantibodies. BLAST search identified murine anti-DNA autoantibody MRL-4 with sequences of variable region genes highly homologous to those of autoantibody BV04-01. Despite significant homology to BV04-01, not only MRL-4 had no DNA-cleaving activity, but also reversion of its unusual P23 mutation to the germline alanine resulted in a dramatic loss of affinity to DNA. Contrary to this effect, transfer of the P23 mutation to the BV04-01 has resulted in a significant drop in DNA binding and almost complete loss of catalytic activity. In the present paper we analyzed the properties of two homologous autoantibodies and mutants thereof and discussed the implications of unusual somatic mutations for the development of autoantibodies with DNA-binding and DNA-hydrolyzing activity. Hindawi Publishing Corporation 2012 2012-11-11 /pmc/articles/PMC3502752/ /pubmed/23193442 http://dx.doi.org/10.1155/2012/683829 Text en Copyright © 2012 A. V. Kozyr et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Kozyr, A. V.
Kolesnikov, A. V.
Khlyntseva, A. E.
Bogun, A. G.
Savchenko, G. A.
Shemyakin, I. G.
Gabibov, A. G.
Role of Structure-Based Changes due to Somatic Mutation in Highly Homologous DNA-Binding and DNA-Hydrolyzing Autoantibodies Exemplified by A23P Substitution in the VH Domain
title Role of Structure-Based Changes due to Somatic Mutation in Highly Homologous DNA-Binding and DNA-Hydrolyzing Autoantibodies Exemplified by A23P Substitution in the VH Domain
title_full Role of Structure-Based Changes due to Somatic Mutation in Highly Homologous DNA-Binding and DNA-Hydrolyzing Autoantibodies Exemplified by A23P Substitution in the VH Domain
title_fullStr Role of Structure-Based Changes due to Somatic Mutation in Highly Homologous DNA-Binding and DNA-Hydrolyzing Autoantibodies Exemplified by A23P Substitution in the VH Domain
title_full_unstemmed Role of Structure-Based Changes due to Somatic Mutation in Highly Homologous DNA-Binding and DNA-Hydrolyzing Autoantibodies Exemplified by A23P Substitution in the VH Domain
title_short Role of Structure-Based Changes due to Somatic Mutation in Highly Homologous DNA-Binding and DNA-Hydrolyzing Autoantibodies Exemplified by A23P Substitution in the VH Domain
title_sort role of structure-based changes due to somatic mutation in highly homologous dna-binding and dna-hydrolyzing autoantibodies exemplified by a23p substitution in the vh domain
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3502752/
https://www.ncbi.nlm.nih.gov/pubmed/23193442
http://dx.doi.org/10.1155/2012/683829
work_keys_str_mv AT kozyrav roleofstructurebasedchangesduetosomaticmutationinhighlyhomologousdnabindinganddnahydrolyzingautoantibodiesexemplifiedbya23psubstitutioninthevhdomain
AT kolesnikovav roleofstructurebasedchangesduetosomaticmutationinhighlyhomologousdnabindinganddnahydrolyzingautoantibodiesexemplifiedbya23psubstitutioninthevhdomain
AT khlyntsevaae roleofstructurebasedchangesduetosomaticmutationinhighlyhomologousdnabindinganddnahydrolyzingautoantibodiesexemplifiedbya23psubstitutioninthevhdomain
AT bogunag roleofstructurebasedchangesduetosomaticmutationinhighlyhomologousdnabindinganddnahydrolyzingautoantibodiesexemplifiedbya23psubstitutioninthevhdomain
AT savchenkoga roleofstructurebasedchangesduetosomaticmutationinhighlyhomologousdnabindinganddnahydrolyzingautoantibodiesexemplifiedbya23psubstitutioninthevhdomain
AT shemyakinig roleofstructurebasedchangesduetosomaticmutationinhighlyhomologousdnabindinganddnahydrolyzingautoantibodiesexemplifiedbya23psubstitutioninthevhdomain
AT gabibovag roleofstructurebasedchangesduetosomaticmutationinhighlyhomologousdnabindinganddnahydrolyzingautoantibodiesexemplifiedbya23psubstitutioninthevhdomain