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Production of Murine Leukemia RL♂1 Rejection Antigen Peptide pRL1a by Proteolysis of Natural Precursor pRL1b
Authors:Toshiro Ono  Akiko Uenaka  Eiichi Nakayama
Affiliation:Department of Parasitology and Immunology, Okayama University Medical School, 2-5-1 Shikata-cho, Okayama 700
Abstract:In this study, we demonstrated that NH2-terminal Ser and Ile residues of pRL1b (SI-pRL1a) (SIIPGLPLSL) are not involved in the recognition by RL♂1-specific cytotoxic T lymphocyte. The sensitization activity observed with pRL1b (SI-pRL1a) was not greater than that of peptides substituted with irrelevant amino acids at these positions. In serum-free medium, pRL1a retained sensitization activity, but pRL1b (SI-pRL1a) did not. Furthermore, addition of bestatin to serumcontaining medium blocked sensitization by pRL1b (SI-pRL1a). On the other hand, the addition of captopril enhanced it, probably by inhibiting the degradation of pRL1a by ACE. pRL1a-D peptide with D-Ile in place of the L-Ile residue of pRL1a (IPGLPLSL) showed sensitization, but SI-pRL1a-2,3D peptide, which has D-Iles in place of the L-Ile residues of pRL1b (SI-pRL1a), and which was not cleaved between the two D-Iles, did not. The findings suggest that pRL1a is the antigenic peptide bound to Ld molecules and pRL1b (SI-pRL1a) peptide is its natural precursor, which generates pRL1a via proteolysis.
Keywords:BALB/c leukemia RL♂l    Cytotoxic T lymphocyte    Tumor rejection antigen peptide    Natural precursor peptide    Protease
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