Garrett T P, Saper M A, Bjorkman P J, Strominger J L, Wiley D C
Department of Biochemistry and Molecular Biology, Harvard University, Cambridge, Massachusetts 02138.
Nature. 1989 Dec 7;342(6250):692-6. doi: 10.1038/342692a0.
We have determined the structure of a second human histocompatibility glycoprotein, HLA-Aw68, by X-ray crystallography and refined it to a resolution of 2.6 A. Overall, the structure is extremely similar to that of HLA-A2 (refs 1, 2; and M.A.S. et al., manuscript in preparation), although the 11 amino-acid substitutions at polymorphic residues in the antigen-binding cleft alter the detailed shape and electrostatic charge of that site. A prominent negatively charged pocket within the cleft extends underneath the alpha-helix of the alpha 1-domain, providing a potential subsite for recognizing a positively charged side chain or peptide N terminus. Uninterpreted electron density, presumably representing an unknown 'antigen(s)', which seems to be different from that seen in the HLA-A2 structure, occupies the cleft and extends into the negatively charged pocket in HLA-Aw68. The structures of HLA-Aw68 and HLA-A2 demonstrate how polymorphism creates and alters subsites (pockets) positioned to bind peptide side chains, thereby suggesting the structural basis for allelic specificity in foreign antigen binding.
我们通过X射线晶体学确定了第二种人类组织相容性糖蛋白HLA - Aw68的结构,并将其精修至2.6埃的分辨率。总体而言,该结构与HLA - A2的结构极为相似(参考文献1、2;以及M.A.S.等人,正在准备的手稿),尽管抗原结合裂隙中多态性残基处的11个氨基酸替换改变了该位点的详细形状和静电荷。裂隙内一个突出的带负电荷的口袋在α1结构域的α螺旋下方延伸,为识别带正电荷的侧链或肽N端提供了一个潜在的亚位点。未解析的电子密度大概代表一种未知的“抗原”,它似乎与在HLA - A2结构中看到的不同,占据了裂隙并延伸到HLA - Aw68中带负电荷的口袋内。HLA - Aw68和HLA - A2的结构展示了多态性如何产生和改变用于结合肽侧链的亚位点(口袋),从而揭示了外来抗原结合中等位基因特异性的结构基础。