Lewis Lanier, PhD

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Lewis Lanier, PhD

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Professor, School of Medicine
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Natural killer (NK) cells are a type of white blood cell that provides protection against microbial pathogens and tumors. Since the early 1980’s, our lab has investigated how NK cells distinguish between normal healthy cells and cells that are transformed or infected with viruses. NK cells express a diverse array of inhibitory and activating receptors on their cells surface that bind to ligands expressed on the cell surface of potential target cells. When encountering healthy cells, signals transmitted by inhibitory NK receptors dominate and prevent autoimmunity, whereas the loss of ligands for the inhibitory receptors or the upregulation of ligands for the activating NK receptors on infected or transformed cells allows NK cells to kill these abnormal cells and secrete cytokine that influence the subsequent response by T cells and B cells. We have developed mouse models systems in which key signaling molecules such as DAP10 and DAP12 have been ablated to explore the physiological role of these NK receptors in resistance to viral infections (cytomegalovirus, poxviruses, and influenza) and primary tumorigenesis.
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  1. Lanier LL, Phillips JH. Human thymic and peripheral blood non-MHC-restricted cytotoxic lymphocytes. Med Oncol Tumor Pharmacother. 1986; 3(3-4):247-54.
  2. Lanier LL, Phillips JH. Ontogeny of natural killer cells. Nature. 1986 Jan 23-29; 319(6051):269-70.
  3. Lanier LL, Kipps TJ, Phillips JH. Functional properties of a unique subset of cytotoxic CD3+ T lymphocytes that express Fc receptors for IgG (CD16/Leu-11 antigen). J Exp Med. 1985 Dec 01; 162(6):2089-106.
  4. Lanier L. Lymphocyte surface antigens. Introduction. Fed Proc. 1985 Oct; 44(13):2863-4.
  5. Allison JP, McIntyre BW, Ridge LL, Gross-Pelose J, Lanier LL. Molecular characterization of the murine T cell antigen receptor and associated structures. Fed Proc. 1985 Oct; 44(13):2870-3.
  6. Strassmann G, Springer TA, Haskill SJ, Miraglia CC, Lanier LL, Adams DO. Antigens associated with the activation of murine mononuclear phagocytes in vivo: differential expression of lymphocyte function-associated antigen in the several stages of development. Cell Immunol. 1985 Aug; 94(1):265-75.
  7. Fox RI, Hugli TE, Lanier LL, Morgan EL, Howell F. Salivary gland lymphocytes in primary Sjogren's syndrome lack lymphocyte subsets defined by Leu-7 and Leu-11 antigens. J Immunol. 1985 Jul; 135(1):207-14.
  8. Ault KA, Lanier LL. Terminology in T gamma lymphoproliferative disease. Blood. 1985 Jul; 66(1):248-9.
  9. Lanier LL, Arnaout MA, Schwarting R, Warner NL, Ross GD. p150/95, Third member of the LFA-1/CR3 polypeptide family identified by anti-Leu M5 monoclonal antibody. Eur J Immunol. 1985 Jul; 15(7):713-8.
  10. Phillips JH, Lanier LL. A model for the differentiation of human natural killer cells. Studies on the in vitro activation of Leu-11+ granular lymphocytes with a natural killer-sensitive tumor cell, K562. J Exp Med. 1985 Jun 01; 161(6):1464-82.
  11. Allison JP, Lanier LL. Identification of antigen receptor-associated structures on murine T cells. Nature. 1985 Mar 7-13; 314(6006):107-9.
  12. Green PL, Lamph WW, Dudley J, Arfsten A, Risser R, Lanier LL, Warner NL, Tung JS, Scheid MP. Phenotypic variation in clonal Abelson virus lymphoma cells. J Immunol. 1985 Feb; 134(2):1268-75.
  13. Lanier LL, Benike CJ, Phillips JH, Engleman EG. Recombinant interleukin 2 enhanced natural killer cell-mediated cytotoxicity in human lymphocyte subpopulations expressing the Leu 7 and Leu 11 antigens. J Immunol. 1985 Feb; 134(2):794-801.
  14. Waldor MK, Sriram S, Hardy R, Herzenberg LA, Herzenberg LA, Lanier L, Lim M, Steinman L. Reversal of experimental allergic encephalomyelitis with monoclonal antibody to a T-cell subset marker. Science. 1985 Jan 25; 227(4685):415-7.
  15. Prince HE, Hirji K, Waldbeser LS, Plaeger-Marshall S, Kleinman S, Lanier LL. Influence of racial background on the distribution of T-cell subsets and Leu 11-positive lymphocytes in healthy blood donors. Diagn Immunol. 1985; 3(1):33-7.
  16. Krensky AM, Lanier LL, Engleman EG. Lymphocyte subsets and surface molecules in man. Clin Immunol Rev. 1985; 4(1):95-138.
  17. Allison JP, Ridge L, Lund J, Gross-Pelose J, Lanier L, McIntyre BW. The murine T cell antigen receptor and associated structures. Immunol Rev. 1984 Oct; 81:145-60.
  18. Chen YX, Evans RL, Pollack MS, Lanier LL, Phillips JH, Rousso C, Warner NL, Brodsky FM. Characterization and expression of the HLA-DC antigens defined by anti-Leu 10. Hum Immunol. 1984 Aug; 10(4):221-35.
  19. Perussia B, Trinchieri G, Jackson A, Warner NL, Faust J, Rumpold H, Kraft D, Lanier LL. The Fc receptor for IgG on human natural killer cells: phenotypic, functional, and comparative studies with monoclonal antibodies. J Immunol. 1984 Jul; 133(1):180-9.
  20. Basham T, Smith W, Lanier L, Morhenn V, Merigan T. Regulation of expression of class II major histocompatibility antigens on human peripheral blood monocytes and Langerhans cells by interferon. Hum Immunol. 1984 Jun; 10(2):83-93.
  21. Phillips JH, Le AM, Lanier LL. Natural killer cells activated in a human mixed lymphocyte response culture identified by expression of Leu-11 and class II histocompatibility antigens. J Exp Med. 1984 Apr 01; 159(4):993-1008.
  22. Lanier LL, Phillips JH, Warner NL, Babcock GF. A human natural killer cell-associated antigen defined by monoclonal antibody anti-Leu (NKP-15): functional and two-color flow cytometry analysis. J Leukoc Biol. 1984 Jan; 35(1):11-7.
  23. Lanier LL, Loken MR. Human lymphocyte subpopulations identified by using three-color immunofluorescence and flow cytometry analysis: correlation of Leu-2, Leu-3, Leu-7, Leu-8, and Leu-11 cell surface antigen expression. J Immunol. 1984 Jan; 132(1):151-6.
  24. Hogarth PM, McKenzie IF, Lanier L, Bailey DW, Taylor BA. Location of Ly-7 on mouse chromosome 12. Immunogenetics. 1984; 19(6):539-43.
  25. Lanier LL, Le AM, Phillips JH, Warner NL, Babcock GF. Subpopulations of human natural killer cells defined by expression of the Leu-7 (HNK-1) and Leu-11 (NK-15) antigens. J Immunol. 1983 Oct; 131(4):1789-96.