Natural killer cells antigen CD94
Definition:
References:
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[1]. Bana Jabri, et al. TCR specificity dictates CD94/NKG2A expression by human CTL. Immunity. 2002 Oct;17(4):487-99. [Content Brief]
[2]. L L Lanier, et al. Association of DAP12 with activating CD94/NKG2C NK cell receptors. Immunity. 1998 Jun;8(6):693-701. [Content Brief]
[3]. V M Braud, et al. HLA-E binds to natural killer cell receptors CD94/NKG2A, B and C. Nature. 1998 Feb 19;391(6669):795-9. [Content Brief]
[4]. Daria Bortolotti, et al. SARS-CoV-2 Spike 1 Protein Controls Natural Killer Cell Activation via the HLA-E/NKG2A Pathway. Cells. 2020 Aug 26;9(9):1975. [Content Brief]
[5]. Daniela F Angelini, et al. NKG2A inhibits NKG2C effector functions of γδ T cells: implications in health and disease. J Leukoc Biol. 2011 Jan;89(1):75-84. [Content Brief]
[6]. Takahiro Kamiya, et al. Blocking expression of inhibitory receptor NKG2A overcomes tumor resistance to NK cells. J Clin Invest. 2019 Mar 12;129(5):2094-2106. [Content Brief]
[7]. Alexander Rölle, et al. Distinct HLA-E Peptide Complexes Modify Antibody-Driven Effector Functions of Adaptive NK Cells. Cell Rep. 2018 Aug 21;24(8):1967-1976.e4. [Content Brief]
[8]. P Tomasec, et al. Surface expression of HLA-E, an inhibitor of natural killer cells, enhanced by human cytomegalovirus gpUL40. Science. 2000 Feb 11;287(5455):1031. [Content Brief]
[9]. Jacob Nattermann, et al. HIV-1 infection leads to increased HLA-E expression resulting in impaired function of natural killer cells. Antivir Ther. 2005;10(1):95-107. [Content Brief]
[10]. N M Valiante, et al. Functionally and structurally distinct NK cell receptor repertoires in the peripheral blood of two human donors. Immunity. 1997 Dec;7(6):739-51. [Content Brief]
[11]. J C Boyington, et al. Structure of CD94 reveals a novel C-type lectin fold: implications for the NK cell-associated CD94/NKG2 receptors. Immunity. 1999 Jan;10(1):75-82. [Content Brief]
[12]. Pascale André, et al. Anti-NKG2A mAb Is a Checkpoint Inhibitor that Promotes Anti-tumor Immunity by Unleashing Both T and NK Cells. Cell. 2018 Dec 13;175(7):1731-1743.e13. [Content Brief]
[13]. Lucy C Sullivan, et al. The heterodimeric assembly of the CD94-NKG2 receptor family and implications for human leukocyte antigen-E recognition. Immunity. 2007 Dec;27(6):900-11. [Content Brief]
[14]. Mónica Gumá, et al. The CD94/NKG2C killer lectin-like receptor constitutes an alternative activation pathway for a subset of CD8+ T cells. Eur J Immunol. 2005 Jul;35(7):2071-80. [Content Brief]
[15]. Juraj Kabat, et al. Role that each NKG2A immunoreceptor tyrosine-based inhibitory motif plays in mediating the human CD94/NKG2A inhibitory signal. J Immunol. 2002 Aug 15;169(4):1948-58. [Content Brief]
[16]. Sandra Lopez-Vergès, et al. Expansion of a unique CD57⁺NKG2Chi natural killer cell subset during acute human cytomegalovirus infection. Proc Natl Acad Sci U S A. 2011 Sep 6;108(36):14725-32. [Content Brief]
[17]. Susan L Heatley, et al. Polymorphism in human cytomegalovirus UL40 impacts on recognition of human leukocyte antigen-E (HLA-E) by natural killer cells. J Biol Chem. 2013 Mar 22;288(12):8679-8690. [Content Brief]
[18]. M Llano, et al. HLA-E-bound peptides influence recognition by inhibitory and triggering CD94/NKG2 receptors: preferential response to an HLA-G-derived nonamer. Eur J Immunol. 1998 Sep;28(9):2854-63. [Content Brief]
[19]. Govind Bhagat, et al. Small intestinal CD8+TCRgammadelta+NKG2A+ intraepithelial lymphocytes have attributes of regulatory cells in patients with celiac disease. J Clin Invest. 2008 Jan;118(1):281-93. [Content Brief]
[20]. E Le Dréan, et al. Inhibition of antigen-induced T cell response and antibody-induced NK cell cytotoxicity by NKG2A: association of NKG2A with SHP-1 and SHP-2 protein-tyrosine phosphatases. Eur J Immunol. 1998 Jan;28(1):264-76. [Content Brief]