TY - JOUR
T1 - Maternally transmitted antigen of mice
T2 - A model transplantation antigen
AU - Fischer Lindahl, K.
AU - Hermel, E.
AU - Loveland, B. E.
AU - Wang, C. R.
PY - 1991
Y1 - 1991
N2 - Molecular identification proved Mta, the maternally transmitted antigen of mice, to be a model minor histocompatibility (H) antigen. It consists of a peptide, MTF, that is presented on the cell surface by an H-2 class-I molecule, HMT. MTF is derived from ND1, a mitochondrially encoded protein, and the amino-terminal N-formyl-methionine is essential for binding to HMT; conservative substitutions at the sixth residue causes MTF to be a minor H antigen. HMT is encoded by the M3 gene at the telomeric end of the H-2 complex. The peptide-binding site of HMT is hydrophobic, and allelic forms of the mature protein differ by only three amino acids. Homologues and analogues of the mouse Mta system have recently been identified in rats.
AB - Molecular identification proved Mta, the maternally transmitted antigen of mice, to be a model minor histocompatibility (H) antigen. It consists of a peptide, MTF, that is presented on the cell surface by an H-2 class-I molecule, HMT. MTF is derived from ND1, a mitochondrially encoded protein, and the amino-terminal N-formyl-methionine is essential for binding to HMT; conservative substitutions at the sixth residue causes MTF to be a minor H antigen. HMT is encoded by the M3 gene at the telomeric end of the H-2 complex. The peptide-binding site of HMT is hydrophobic, and allelic forms of the mature protein differ by only three amino acids. Homologues and analogues of the mouse Mta system have recently been identified in rats.
KW - Antigen presentation
KW - Class-I molecules
KW - Cytotoxic T lymphocytes
KW - Major histocompatibility complex
KW - Mitochondria
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U2 - 10.1146/annurev.iy.09.040191.002031
DO - 10.1146/annurev.iy.09.040191.002031
M3 - Review article
C2 - 1910682
AN - SCOPUS:0025797374
SN - 0301-3782
VL - 9
SP - 351
EP - 372
JO - Annual Review of Immunology
JF - Annual Review of Immunology
ER -