Stewart-Jones Guillame B E, di Gleria Kati, Kollnberger Simon, McMichael Andrew J, Jones E Yvonne, Bowness Paul
The Division of Structural Biology, The Wellcome Trust Centre for Human Genetics, Oxford, UK.
Eur J Immunol. 2005 Feb;35(2):341-51. doi: 10.1002/eji.200425724.
We have solved the crystal structures of three HLA-B2705-peptide complexes with the immunodominant viral peptides: EBV EBNA3C 258-266 (RRIYDLIEL), influenza (flu) nucleoprotein NP383-391 (SRYWAIRTR), and HIV gag 264-273 (KRWIILGLNK). Long-term non-progression during HIV infection has been associated with presentation by HLA-B2705, and T cell recognition, of the highly immunodominant KRWIILGLNK peptide. The tight hydrogen-bonding network observed between the HLA-B2705 B-pocket and the peptide P2 arginine guanadinium anchor explains why mutation of this residue during HIV infection results in loss of peptide binding, immune escape and progression to AIDS. Prominent, solvent-exposed structures within these peptides may participate in generating T cell responses to these immunodominant epitopes. In the HLA-B2705 complex with flu NP383-391, the amino acid side chains of residues 4, 7 and 8 are solvent-exposed whilst in the HIV decamer, the main-chain bulges into the solvent around P7. Thus, HLA-B2705 presents viral peptides in a range of conformations. Tetrameric complexes of HLA-B2705 with the HIV and flu but not EBV peptides bound strongly to the killer-Ig-like receptor (KIR)3DL1. Substitution of EBV P8 glutamate to threonine allowed recognition by KIR3DL1. In the HLA-B*2705-EBV structure the P8 glutamate side chain is solvent-exposed and may inhibit KIR3DL1 binding through electrostatic forces.
我们解析了三种HLA - B2705与免疫显性病毒肽形成的复合物的晶体结构,这些病毒肽分别是:EBV EBNA3C 258 - 266(RRIYDLIEL)、流感病毒核蛋白NP383 - 391(SRYWAIRTR)以及HIV gag 264 - 273(KRWIILGLNK)。HIV感染期间的长期无进展与HLA - B2705呈递高度免疫显性的KRWIILGLNK肽以及T细胞识别相关。在HLA - B2705的B口袋与肽的P2精氨酸胍基锚定基团之间观察到紧密的氢键网络,这解释了HIV感染期间该残基发生突变为何会导致肽结合丧失、免疫逃逸以及病情进展至艾滋病。这些肽中突出的、暴露于溶剂中的结构可能参与引发针对这些免疫显性表位的T细胞应答。在与流感病毒NP383 - 391形成的HLA - B2705复合物中,第4、7和8位残基的氨基酸侧链暴露于溶剂中,而在HIV十肽中,主链在P7周围向溶剂中突出。因此,HLA - B2705以一系列构象呈递病毒肽。HLA - B2705与HIV和流感病毒肽而非EBV肽形成的四聚体复合物与杀伤细胞免疫球蛋白样受体(KIR)3DL1紧密结合。将EBV的P8谷氨酸替换为苏氨酸可使KIR3DL1识别。在HLA - B*2705 - EBV结构中,P8谷氨酸侧链暴露于溶剂中,可能通过静电力抑制KIR3DL1的结合。