Hülsmeyer Martin, Welfle Karin, Pöhlmann Thomas, Misselwitz Rolf, Alexiev Ulrike, Welfle Heinz, Saenger Wolfram, Uchanska-Ziegler Barbara, Ziegler Andreas
Institut für Chemie/Kristallographie, Freie Universität Berlin, Takustrasse 6, 14195 Berlin, Germany.
J Mol Biol. 2005 Mar 11;346(5):1367-79. doi: 10.1016/j.jmb.2004.12.047. Epub 2005 Jan 28.
The F pocket of major histocompatibility complex (in humans HLA) class I molecules accommodates the C terminus of the bound peptide. Residues forming this pocket exhibit considerable polymorphism, and a single difference (Asp116 in HLA-B2705 and His116 in HLA-B2709 heavy chains) confers differential association of these two HLA-B27 subtypes to the autoimmune disease ankylosing spondylitis. As peptide presentation by HLA molecules is of central importance for immune responses, we performed thermodynamic (circular dichroism, differential scanning calorimetry, fluorescence polarization) and X-ray crystallographic analyses of both HLA-B27 subtypes complexed with the epidermal growth factor response factor 1-derived self-peptide TIS (RRLPIFSRL) to understand the impact of the Asp116His exchange on peptide display. This peptide is known to be presented in vivo by both subtypes, and as expected for a self-peptide, TIS-reactive cytotoxic T lymphocytes are absent in the respective individuals. The thermodynamic analyses reveal that both HLA-B27:TIS complexes exhibit comparable, relatively high thermostability (Tm approximately 60 degrees C) and undergo multi-step unfolding reactions, with dissociation of the peptide in the first step. As shown by X-ray crystallography, only subtle structural differences between the subtypes were observed regarding the architecture of their F pockets, including the presence of distinct networks of water molecules. However, no consistent structural differences were found between the peptide presentation modes. In contrast to other peptides displayed by the two HLA-subtypes which show either structural or dynamical differences in their peptide presentation modes, the TIS-complexed HLA-B2705 and HLA-B2709 subtypes are an example for thermodynamic and structural equivalence, in agreement with functional data.
主要组织相容性复合体(人类为HLA)I类分子的F口袋容纳结合肽的C末端。形成该口袋的残基表现出相当大的多态性,一个单一差异(HLA - B2705重链中的Asp116和HLA - B2709重链中的His116)赋予这两种HLA - B27亚型与自身免疫性疾病强直性脊柱炎的不同关联性。由于HLA分子呈递肽对于免疫反应至关重要,我们对与表皮生长因子反应因子1衍生的自身肽TIS(RRLPIFSRL)复合的两种HLA - B27亚型进行了热力学(圆二色性、差示扫描量热法、荧光偏振)和X射线晶体学分析,以了解Asp116His交换对肽展示的影响。已知该肽在体内由这两种亚型呈递,并且正如对自身肽的预期,相应个体中不存在TIS反应性细胞毒性T淋巴细胞。热力学分析表明,两种HLA - B27:TIS复合物均表现出相当的、相对较高的热稳定性(熔点约60℃),并经历多步解折叠反应,第一步是肽的解离。如X射线晶体学所示,关于它们F口袋的结构,仅观察到亚型之间的细微结构差异,包括存在不同的水分子网络。然而,在肽呈递模式之间未发现一致的结构差异。与这两种HLA亚型展示的其他肽在肽呈递模式上表现出结构或动力学差异不同,与功能数据一致,与TIS复合的HLA - B2705和HLA - B2709亚型是热力学和结构等效性的一个例子。