Samaridis, J., and Colonna, M., GenBank Accession No. U82279, also disclosed in: Cloning of novel immunoglobulin superfamily receptors expressed on human myeloid an lymphoid cells:structural evidence for new stimulatory and inhibitory pathways. Eur. J. I, Mar. 27, 1997.* |
Hillier, L., et al. GenBank Accession No. N95687, Apr. 9, 1996.* |
Naeve, C.W., et al. Accuracy of automated DNA sequencing; a multilaboratory comparison of sequencing results. Biotechniques 19(3):448-452, 1995.* |
Samaridis et al., “Cloning of novel immunoglobulin superfamily receptors expressed on human myeloid and lymphoid cells: structural evidence for new stimulatory and inhibitory pathways”, Eur. J. Immunol. 27 : 660-665, 1997. |
Rojo, et al., “Type I Transmembrane Receptor with Inhibitory Function in Mouse Mast Cells and NK Cells”, The Journal of Immunology 158: 9-12, 1997. |
Hayami et al., “Molecular Cloning of a Novel Murine Cell-surface Glycoprotein Homologous to Killer Cell Inhibitory Receptors”, The Journal of Biological Chemistry 272:7320-7327, Mar. 1997. |
Kubagawa et al., “A novel pair of immunoglobulin-like receptors expressed by B cells and myeloid cells ”, Proc. Natl. Acad. Sci. USA 94: 5261-5266, May 1997. |
Cella et al., “A Novel Inhibitory Receptor (ILT3) Expressed on Monocytes, Macrophages, and Dendritic Cells Involved in Antigen Processing”, J. Exp. Med. 185 #10: 1743-1751, May 1997. |
Colonna et al., “Cloning of Immunoglobulin-Superfamily Members Associated with HLA-C and HLA-B Recognition by Human Natural Killer Cells”, Science 268: 405-408, Apr. 1995. |
Moretta, et al., “Existence of Both Inhibitory (p58) and Activatory (p50) Receptors for HLA-C Molecules in Human Natural Killer Cells”, J. Exp. Med. 182: 875-884, Sep. 1995. |
Katz et al., “Mouse mast cell gp49B1 contains two immunoreceptor tyrosine-based inhibition motifs and suppresses mast cell activation when coligated with the high-affinity Fc receptor of IgE”, Proc. Natl. Acad. Sci. USA 93: 10809-10814, Oct. 1996. |
Biassoni et al., “The Human Leukocyte Antigen (HLA)-C-specific ‘Activatory’ or ‘Inhibitory’ Natural Killer Cell Receptors Display Highly Homologous Extracellular Domains but Differ in their Transmembrane and Intracytoplasmic Portions”, J. Exp. Med. 183: 645-650, Feb. 1996. |
Burshtyn et al., “Recruitment of Tyrosine Phosphatase HCP by the Killer Cell Inhibitory Receptor”, Immunity 4: 77-85, Jan. 1996. |
Fry et al., “Phosphotyrosines in the Killer Cell Inhibitory Receptor Motif of NKB1 Are Required for Negative Signaling and for Association with Protein Tyrosine Phosphatase 1C”, J. Exp. Med. 184: 295-300, Jul. 1996. |
Lanier et al., “Inhibitory MHC class I receptors on NK cells and T cells”. Immunology Today: Feb. 1996. |
Imboden, J. “Inate immunity: Turning off natural killers”, Current Biology 6 #9:1070-1072, 1996. |
Arm, J. et al., “Molecular Identification of a Novel Family of Human Ig Superfamily Members That Possess Immunoreceptor Tyrosine-Based Inhibition Motifs and Homology to the Mouse gp49B1 Inhibitory Receptor,” J. Immunol. 159 (5):2342-2349, 1997. |
Cosman, D. et al., “A Novel Immunoglobulin superfamily Receptor for Cellular and Viral MHC Class I Molecules,” Immunity 7:273-282, 1997. |
Borges, L. et al., “A Family of Human Lymphoid and Myeloid Ig-Like Receptors, Some of Which Bind to MHC Class I Molecules,” J. Immunol. 159 (11):5192-5196, 1997. |
Lewis L. Lanier, “Natural killer cell receptors and MHC class I interactions,” 9 (1):126-131, 1997. Current Opinion in Immunology. |