HLA class I histocompatibility antigen, B alpha chain
Definition:
References:
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[1]. T S Jardetzky, et al. Identification of self peptides bound to purified HLA-B27. Nature. 1991 Sep 26;353(6342):326-9. [Content Brief]
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[3]. Heather D Hickman, et al. Toward a definition of self: proteomic evaluation of the class I peptide repertoire. J Immunol. 2004 Mar 1;172(5):2944-52. [Content Brief]
[4]. L D Barber, et al. Overlap in the repertoires of peptides bound in vivo by a group of related class I HLA-B allotypes. Curr Biol. 1995 Feb 1;5(2):179-90. [Content Brief]
[5]. J Bilsborough, et al. A MAGE-3 peptide presented by HLA-B44 is also recognized by cytolytic T lymphocytes on HLA-B18. Tissue Antigens. 2002 Jul;60(1):16-24. [Content Brief]
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[7]. Kok Fei Chan, et al. Divergent T-cell receptor recognition modes of a HLA-I restricted extended tumour-associated peptide. Nat Commun. 2018 Mar 12;9(1):1026. [Content Brief]
[8]. Hugo G Hilton, et al. The Intergenic Recombinant HLA-B∗46:01 Has a Distinctive Peptidome that Includes KIR2DL3 Ligands. Cell Rep. 2017 May 16;19(7):1394-1405. [Content Brief]
[9]. Henrik N Kløverpris, et al. A molecular switch in immunodominant HIV-1-specific CD8 T-cell epitopes shapes differential HLA-restricted escape. Retrovirology. 2015 Feb 20;12:20. [Content Brief]
[10]. Guillame B E Stewart-Jones, et al. Crystal structures and KIR3DL1 recognition of three immunodominant viral peptides complexed to HLA-B*2705. Eur J Immunol. 2005 Feb;35(2):341-51. [Content Brief]
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[12]. C A Peh, et al. HLA-B27-restricted antigen presentation in the absence of tapasin reveals polymorphism in mechanisms of HLA class I peptide loading. Immunity. 1998 May;8(5):531-42. [Content Brief]
[13]. M Peruzzi, et al. A p70 killer cell inhibitory receptor specific for several HLA-B allotypes discriminates among peptides bound to HLA-B*2705. J Exp Med. 1996 Oct 1;184(4):1585-90. [Content Brief]
[14]. Nina Hillen, et al. Essential differences in ligand presentation and T cell epitope recognition among HLA molecules of the HLA-B44 supertype. Eur J Immunol. 2008 Nov;38(11):2993-3003. [Content Brief]
[15]. Eva Dazert, et al. Loss of viral fitness and cross-recognition by CD8+ T cells limit HCV escape from a protective HLA-B27-restricted human immune response. J Clin Invest. 2009 Feb;119(2):376-86. [Content Brief]
[16]. Philippa M Saunders, et al. The interaction of KIR3DL1*001 with HLA class I molecules is dependent upon molecular microarchitecture within the Bw4 epitope. J Immunol. 2015 Jan 15;194(2):781-789. [Content Brief]
[17]. Isobella Honeyborne, et al. Control of human immunodeficiency virus type 1 is associated with HLA-B*13 and targeting of multiple gag-specific CD8+ T-cell epitopes. J Virol. 2007 Apr;81(7):3667-72. [Content Brief]
[18]. Julia Schmidt, et al. Rapid antigen processing and presentation of a protective and immunodominant HLA-B*27-restricted hepatitis C virus-specific CD8+ T-cell epitope. PLoS Pathog. 2012;8(11):e1003042. [Content Brief]
[19]. E G M Berkhoff, et al. A mutation in the HLA-B*2705-restricted NP383-391 epitope affects the human influenza A virus-specific cytotoxic T-lymphocyte response in vitro. J Virol. 2004 May;78(10):5216-22. [Content Brief]
[20]. Chihiro Motozono, et al. Molecular basis of a dominant T cell response to an HIV reverse transcriptase 8-mer epitope presented by the protective allele HLA-B*51:01. J Immunol. 2014 Apr 1;192(7):3428-34. [Content Brief]
[21]. Arne Schneidewind, et al. Structural and functional constraints limit options for cytotoxic T-lymphocyte escape in the immunodominant HLA-B27-restricted epitope in human immunodeficiency virus type 1 capsid. J Virol. 2008 Jun;82(11):5594-605. [Content Brief]