Menssen R, Orth P, Ziegler A, Saenger W
Institut für Immungenetik Universitätsklinikum Charité, Humboldt-Universität zu Berlin, Spandauer Damm 130, Berlin, D-14050, Germany.
J Mol Biol. 1999 Jan 15;285(2):645-53. doi: 10.1006/jmbi.1998.2363.
The N and C termini of peptides presented by major histocompatibility complex (MHC) class I molecules are held within the peptide binding groove by a network of hydrogen bonds to conserved MHC residues. However, the published structure of the human allele HLA-B3501 complexed with the nef octa-peptide VPLRPMTY, revealed non-standard positioning for both peptide termini. To investigate whether these deviations are indeed related to the length of the nef-peptide, we have determined the structure of HLA-B3501 presenting a nona-peptide to 2.5 A resolution. A comparison of HLA-B3501/peptide complexes with structures of other HLA molecules exhibits allele-specific properties of HLA-B3501, as well as peptide-induced structural changes. Independent of the length of the bound peptide, HLA-B3501 positions the peptide C terminus significantly closer to the alpha1-helix and nearer to the A pocket than observed for other HLA class I/peptide complexes. This reorientation is accompanied by a shift within the N-terminal part of the alpha2-helix towards the middle of the binding groove. Due to the short distance between the N and C termini, the nona-peptide is compressed and forced to zig-zag vertically within the binding groove. Its conformation rather resembles that of a deca-peptide than of other nona-peptides bound to class I molecules. Superposition of both HLA-B3501/peptide complexes additionally reveals a significant, peptide-dependent deviation between the N-terminal parts of the alpha1-helices which might be due to different positioning of the peptide N termini. Taken together, these data illustrate the strong interdependence between the HLA class I molecule and the bound peptide.
主要组织相容性复合体(MHC)I类分子呈递的肽段的N端和C端通过与保守的MHC残基形成的氢键网络,被固定在肽结合槽内。然而,已发表的与nef八肽VPLRPMTY复合的人类等位基因HLA - B3501的结构显示,两个肽端的定位都不标准。为了研究这些偏差是否确实与nef肽的长度有关,我们测定了呈递九肽的HLA - B3501的结构,分辨率达到2.5埃。将HLA - B3501/肽复合物与其他HLA分子的结构进行比较,揭示了HLA - B3501的等位基因特异性特性以及肽诱导的结构变化。与其他HLA I类/肽复合物相比,无论结合肽的长度如何,HLA - B3501都将肽的C端定位得明显更靠近α1螺旋且更靠近A口袋。这种重新定位伴随着α2螺旋N端部分向结合槽中部的移动。由于N端和C端之间距离较短,九肽被压缩并被迫在结合槽内垂直曲折排列。其构象更类似于十肽而非与I类分子结合的其他九肽。两种HLA - B3501/肽复合物的叠加还揭示了α1螺旋N端部分之间存在显著的、依赖于肽的偏差,这可能是由于肽N端的不同定位所致。综上所述,这些数据说明了HLA I类分子与结合肽之间的强烈相互依赖性。