Harris L J, Skaletsky E, McPherson A
Department of Molecular Biology & Biochemistry, University of California, Irvine, CA 92697, USA.
J Mol Biol. 1998 Feb 6;275(5):861-72. doi: 10.1006/jmbi.1997.1508.
The structure of an intact monoclonal antibody for phenobarbital, subclass IgG1, has been determined to 3.2 A resolution by X-ray crystallography. The molecule was visualized in a monoclinic unit cell having an entire immunoglobulin as the asymmetric unit. The two Fab segments, both with elbow angles of 155 degrees , were related by a rotation of 179.7 degrees plus a translation along the approximate dyad of 9 A. This is the first observation of such an Fab translation in a structurally defined antibody. The approximate 2-fold of the Fc was independent of that relating Fabs, making an angle of 107 degrees with the Fab dyad. The angle between long axes of the Fabs was 115 degrees, the most acute angle yet observed, yielding a distorted Y shaped molecule. This is in contrast to the distorted T shape of the only other intact IgG (2a) whose complete structure is known. Primary lattice interactions arise through formation of VH antiparallel beta ribbons whose strands are contributed by pseudo dyad related H2, and by L3 hypervariable loops from neighboring molecules. While one CH2 domain was mobile, Fabs and three domains of the Fc were well defined, as were hinge polypeptides connecting Fabs to the Fc, and the covalently attached oligosaccharides. Direct interactions are observed between hinge polypeptides, the glycosylated loop of one CH2 domain, and the oligosaccharide. Lattice interactions clearly influence, perhaps even determine the overall conformation of the antibody observed in this crystal. Comparison of this IgG1 with previously determined intact antibody structures extends the conformational range arising from segmental flexibility.
已通过X射线晶体学以3.2埃的分辨率确定了针对苯巴比妥的完整单克隆抗体(亚类IgG1)的结构。该分子在以整个免疫球蛋白为不对称单元的单斜晶胞中可视化。两个Fab片段的肘角均为155度,通过179.7度的旋转加上沿近似二重轴9埃的平移相关联。这是在结构明确的抗体中首次观察到这种Fab平移。Fc的近似二重轴与连接Fab的二重轴无关,与Fab二重轴成107度角。Fab长轴之间的角度为115度,这是迄今观察到的最锐角,形成了一个扭曲的Y形分子。这与唯一已知完整结构的另一种完整IgG(2a)的扭曲T形形成对比。初级晶格相互作用通过形成VH反平行β链产生,其链由假二重轴相关的H2以及相邻分子的L3高变环贡献。虽然一个CH2结构域是可移动的,但Fab和Fc的三个结构域定义明确,连接Fab与Fc的铰链多肽以及共价连接的寡糖也是如此。在铰链多肽、一个CH2结构域的糖基化环和寡糖之间观察到直接相互作用。晶格相互作用显然影响甚至可能决定了在此晶体中观察到的抗体的整体构象。将这种IgG1与先前确定的完整抗体结构进行比较,扩展了由片段灵活性产生的构象范围。