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Published on: September 26, 2012
Molecular mimicry of mitochondrial and nuclear autoantigens in primary biliary cirrhosis
Shinji Shimoda1, Minoru Nakamura, Hiromi Ishibashi
1Medicine and Biosystemic Science, Kyushu University Graduate School of Medical Sciences, 3-1-1 Maidashi, Higashi-Ku, Fukuoka 812-8582, Japan. sshimoda@intmed1.med.kyushu-u.ac.jp
Background & Aims:
The mechanism for development of primary biliary cirrhosis (PBC) remains enigmatic, but molecular mimicry has been implicated because of well-known cross-reactivity of human mitochondrial autoantigens and equivalent bacterial antigens. Virtually all patients with PBC have antimitochondrial autoantibodies (AMA), but, interestingly, approximately 50% also manifest antinuclear antibodies (ANA).
Methods:
To determine whether generation of ANA are due to molecular mimicry of mitochondrial peptides, we established 6 T-cell clones selected by a peptide corresponding to the E2 subunit of mitochondrial pyruvate dehydrogenase complex and analyzed for reactivity to mimicry peptides derived from mitochondrial and nuclear autoantigens, including control sequences.
Results:
For mitochondrial autoantigens, 1 peptide from the E2 subunit of the pyruvate dehydrogenase complex, 1 peptide from the E2 subunit of the oxo-glutarate dehydrogenase complex, 1 peptide from the E2 subunit of the branched-chain 2-oxoacid dehydrogenase complex, and 1 peptide from the E3-binding protein cross-reacted with these T-cell clones. For the nuclear autoantigens, 5 peptides from gp210 and 1 from Sp100 cross-reacted with these clones. Furthermore, 1 of 3 T-cell clones selected by recombinant gp210 protein reacted with a mimicry peptide corresponding to amino acids 188-201 of gp210, indicating that this part of the protein is a naturally processed immunodominant T-cell epitope.
Conclusions:
These results demonstrate molecular mimicry between mitochondrial and nuclear autoantigens in PBC and that a mimicry peptide may become an immunodominant T-cell epitope. These data have significance not only for PBC but also for the production of ANA in other disease processes.
Insights
Molecular mimicry between mitochondrial and nuclear autoantigens is demonstrated in primary biliary cirrhosis (PBC). This finding explains the production of antimitochondrial autoantibodies (AMA) and antinuclear antibodies (ANA) in PBC patients.
Area of Science:
- Immunology
- Hepatology
- Autoimmunity
Background:
- Primary biliary cirrhosis (PBC) pathogenesis is unclear, but molecular mimicry is suspected due to cross-reactivity between microbial and human mitochondrial antigens.
- Most PBC patients have antimitochondrial autoantibodies (AMA), and about half also have antinuclear antibodies (ANA).
Purpose of the Study:
- To investigate if molecular mimicry of mitochondrial peptides leads to the generation of ANA.
- To analyze T-cell clone reactivity to mimicry peptides derived from mitochondrial and nuclear autoantigens.
Main Methods:
- Established T-cell clones using a peptide from the pyruvate dehydrogenase complex E2 subunit.
- Analyzed T-cell clone reactivity against mimicry peptides from mitochondrial and nuclear autoantigens.
Main Results:
- Cross-reactivity observed with peptides from mitochondrial autoantigens (pyruvate dehydrogenase, oxo-glutarate dehydrogenase, branched-chain 2-oxoacid dehydrogenase complexes, and E3-binding protein).
- Cross-reactivity also observed with nuclear autoantigens (gp210 and Sp100 peptides).
- A specific gp210 peptide (amino acids 188-201) was identified as a naturally processed, immunodominant T-cell epitope.
Conclusions:
- Demonstrated molecular mimicry between mitochondrial and nuclear autoantigens in PBC.
- A mimicry peptide can act as an immunodominant T-cell epitope in PBC.
- Findings are relevant for understanding ANA production in PBC and other autoimmune diseases.
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