Multiple receptors for HLA-G on human natural killer cells.
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O. Mandelboim | J. Strominger | H. Reyburn | M. Valés‐Gómez | D. Davis | L. Pazmany | B. Rybalov | M. Valés-Gómez | J. L. Strominger | Hugh T. Reyburn | Laszlo Pazmany | Daniel M. Davis
[1] O. Mandelboim,et al. Impaired spontaneous endocytosis of HLA‐G , 1997, European journal of immunology.
[2] D. Geraghty,et al. HLA‐G recognition by human natural killer cells. Involvement of CD94 both as inhibitory and as activating receptor complex , 1997, European journal of immunology.
[3] M. Kubin,et al. A novel immunoglobulin superfamily receptor for cellular and viral MHC class I molecules. , 1997, Immunity.
[4] S. Hiby,et al. Evaluation of trophoblast HLA-G antigen with a specific monoclonal antibody. , 1997, Tissue antigens.
[5] L. Lanier,et al. CD94/NKG2 is the predominant inhibitory receptor involved in recognition of HLA-G by decidual and peripheral blood NK cells. , 1997, Journal of immunology.
[6] I. Melero,et al. The CD94/NKG2-A inhibitory receptor complex is involved in natural killer cell-mediated recognition of cells expressing HLA-G1. , 1997, Journal of immunology.
[7] J. Dausset,et al. The alpha1 domain of HLA-G1 and HLA-G2 inhibits cytotoxicity induced by natural killer cells: is HLA-G the public ligand for natural killer cell inhibitory receptors? , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[8] O. Mandelboim,et al. The class I MHC homologue of human cytomegalovirus inhibits attack by natural killer cells , 1997, Nature.
[9] H. Vally,et al. Inhibition of natural killer cells by a cytomegalovirus MHC class I homologue in vivo , 1997, Nature.
[10] H. Rammensee,et al. Human Histocompatibility Leukocyte Antigen (HLA)-G Molecules Inhibit NKAT3 Expressing Natural Killer Cells , 1997, The Journal of experimental medicine.
[11] I. Melero,et al. Biochemical and serologic evidence for the existence of functionally distinct forms of the CD94 NK cell receptor. , 1996, Journal of immunology.
[12] O. Mandelboim,et al. Protection from Natural Killer Cell-Mediated Lysis by HLA-G Expression on Target Cells , 1996, Science.
[13] O. Mandelboim,et al. Protection from lysis by natural killer cells of group 1 and 2 specificity is mediated by residue 80 in human histocompatibility leukocyte antigen C alleles and also occurs with empty major histocompatibility complex molecules , 1996, The Journal of experimental medicine.
[14] A. Sharkey,et al. Evidence for the expression of HLAA-C class I mRNA and protein by human first trimester trophoblast. , 1996, Journal of immunology.
[15] K. Lim,et al. Human placental HLA-G expression is restricted to differentiated cytotrophoblasts. , 1995, Journal of immunology.
[16] N. Holmes,et al. Resistance of HLA-G and HLA-A2 transfectants to lysis by decidual NK cells. , 1994, Cellular immunology.
[17] S. Christmas,et al. Phenotypic and functional cellular differences between human CD3- decidual and peripheral blood leukocytes. , 1994, Journal of immunology.
[18] M. Fukuda,et al. Detection of Epstein-Barr virus genome in natural-killer-like cell line, YT. , 1992, Leukemia.
[19] J. Guardiola,et al. Specific recognition of human CD3-CD16+ natural killer cells requires the expression of an autosomic recessive gene on target cells , 1990, The Journal of experimental medicine.
[20] S. Fisher,et al. A class I antigen, HLA-G, expressed in human trophoblasts. , 1990, Science.
[21] M. Palmer,et al. Human trophoblast and the choriocarcinoma cell line BeWo express a truncated HLA Class I molecule. , 1990, Journal of immunology.
[22] H. Ljunggren,et al. In search of the 'missing self': MHC molecules and NK cell recognition. , 1990, Immunology today.
[23] R. Demars,et al. Production of human cells expressing individual transferred HLA-A,-B,-C genes using an HLA-A,-B,-C null human cell line. , 1989, Journal of immunology.
[24] H. Orr,et al. A human major histocompatibility complex class I gene that encodes a protein with a shortened cytoplasmic segment. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[25] H. Orr,et al. Use of HLA loss mutants to analyse the structure of the human major histocompatibility complex , 1982, Nature.
[26] W. Faulk,et al. Distribution of β2 microglobulin and HLA in chorionic villi of human placentae , 1976, Nature.
[27] W. J. Hamilton,et al. Trophoblast in Human Utero-Placental Arteries , 1966, Nature.