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1. Bachmaier, K.,, N. Neu,, L. M. de la Maza,, S. Pal,, A. Hessel,, and J. M. Penninger. 1999. Chlamydia infections and heart disease linked through antigenic mimicry. Science 283: 1335 1339.
2. Brusic, V.,, G. Rudy,, and L. Harrison. 1997. Molecular mimicry—from hypothesis towards evidence. Immunol. Today 18: 95 96.
3. Dales, S.,, R. S. Fujinami,, and M. B. A. Oldstone. 1983. Infection with vaccinia favors the selection of hybridomas synthesizing auto-antibodies against intermediate filaments, among them one cross-reacting with the virus hemagglutinin. J. Immunol. 131: 1546 1553.
4. Fujinami, R. S.,, and M. B. A. Oldstone. 1985. Amino acid homology between the encephalitogenic site of myelin basic protein and virus: mechanism for autoimmunity. Science 230: 1043 1045.
5. Fujinami, R. S.,, M. B. A. Oldstone,, Z. Wroblewska,, M. E. Frankel,, and H. Koprowski. 1983. Molecular mimicry in virus infection: crossreaction of measles virus phosphoprotein or of herpes simplex virus protein with human intermediate filaments. Proc. Natl. Acad. Sci. USA 80: 2346 2350.
6. Garcia, K. C.,, M. Degano,, R. L. Stanfield,, A. Brunmark,, M. R. Jackson,, P. A. Peterson,, L. Teyton,, and I. A. Wilson. 1996. The αβ T cell receptor structure at 2.5 Å and its orientation in the TCR-MHC complex. Science 274: 209 219.
7. Hammer, J.,, F. Gallazzi,, E. Bono,, R. W. Karr,, J. Guenot,, P. Valsasnini,, Z. A. Nagy,, and F. Sinigaglia. 1995. Peptide binding to HLA-DR4 molecules: correlation with rheumatoid arthritis association. J. Exp. Med. 181: 1847 1855.
8. Kersh, G. J.,, and P. M. Allen. 1996. Essential flexibility in the T-cell recognition of antigen. Nature 380: 495 498.
9. Maclaren, N.,, and J. Atkinson. 1999. Insulin dependent diabetes mellitus: hypothesis of molecular mimicry between islet cell antigens and microorganisms. Mol. Med. Today Feb: 76 83.
10. Oldstone, M. B. A. 1987. Molecular mimicry and autoimmune disease. Cell 50: 819 820.
11. Oldstone, M. B. A. 1989. Molecular mimicry as a mechanism for the cause and as a probe uncovering etiologic agent(s) of autoimmune disease. Curr. Top. Microbiol. Immunol. 145: 127 135.
12. Oldstone, M. B. A. 1998. Molecular mimicry and immune mediated diseases. FASEB J. 12: 1255 1265.
13. Ruiz, P. J.,, H. Garren,, D. L. Hirschberg,, A. M. Langer-Gould,, M. Levite,, M. V. Karpuj,, S. Southwood,, A. Sette,, P. Conlon,, and L. Steinman. 1999. Microbial epitopes act as altered peptide ligands to prevent experimental autoimmune encephalomyelitis. J. Exp. Med. 189: 1275 1283.
14. Schwimmbeck, P. L.,, T. Dyrberg,, D. Drachman,, and M. B. A. Oldstone. 1989. Molecular mimicry and myasthenia gravis: an autoantigenic site of the acetylcholine receptor α-subunit that has biologic activity and reacts immunochemically with herpes simplex virus. J. Clin. Investig. 84: 1174 1180.
15. Srinivasappa, J.,, J. Saegusa,, B. S. Prabhakar,, M. K. Gentry,, M. J. Buchmeier,, T. J. Wiktor,, H. Koprowski,, M. B. A. Oldstone,, and A. L. Notkins. 1986. Molecular mimicry: frequency of reactivity of monoclonal antiviral antibodies with normal tissues. J. Virol. 57: 397 401.
16. Wucherpfennig, K. W.,, and J. L. Strominger. 1995. Molecular mimicry in T-cell mediated autoimmunity: viral peptides activate human T-cell clones specific for myelin basic protein. Cell 80: 695 705.
17. Zhao, Z.-S.,, F. Granucci,, L. Yeh,, P. Schaffer,, and H. Cantor. 1997. Molecular mimicry by herpes simplex virus-type 1: autoimmune disease after viral infection. Science 279: 1344 1347.

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