Chang C H, Short M T, Westholm F A, Stevens F J, Wang B C, Furey W, Solomon A, Schiffer M
Biochemistry. 1985 Aug 27;24(18):4890-7. doi: 10.1021/bi00339a025.
We have characterized and crystallized a human lambda I light-chain dimer, Bence-Jones protein Loc, which has variable (V) region antigenic determinants characteristic for the lambda I subgroup and constant (C) region determinants of the C lambda I gene Mcg. The crystal structure was determined to 3-A resolution; the R factor is 0.27. The angle formed by the twofold axes of the V and C domains, the "elbow bend", is 97 degrees, the smallest found so far for an antibody fragment. The antigen-binding site formed by the two V domains of the Loc light chain differs significantly from those of other immunoglobulin molecules (light-chain dimers and Fab fragments) for which X-ray crystallographic data are available. Whereas, in other antibody fragments, the V domains are related by a local twofold axis, a local twofold screw axis with a translational component of 3.5 A relates the V domains in protein Loc. In contrast to the classic antigen binding "pocket" formed by V domain interactions in the previously characterized antibody structures, the V region associations in protein Loc result in a central protrusion in the binding site, with grooves on two sides of the protrusion. The structure of protein Loc indicates that immunoglobulins are physically capable of forming a more diverse spectrum of antigen-binding sites than has been heretofore apparent. Moreover, the unusual protruding nature of the binding site may be analogous to structures required for some anti-idiotypic antibodies. Further, the complementarity-determining residues form parts of two independent grooves.(ABSTRACT TRUNCATED AT 250 WORDS)
我们已对一种人λI轻链二聚体——本斯·琼斯蛋白Loc进行了表征和结晶,它具有λI亚组特有的可变(V)区抗原决定簇以及CλI基因Mcg的恒定(C)区决定簇。晶体结构解析到了3埃的分辨率;R因子为0.27。V结构域和C结构域的二重轴所形成的角度,即“肘状弯折”,为97度,这是迄今为止在抗体片段中发现的最小角度。Loc轻链的两个V结构域形成的抗原结合位点与其他有X射线晶体学数据的免疫球蛋白分子(轻链二聚体和Fab片段)的抗原结合位点有显著差异。在其他抗体片段中,V结构域通过局部二重轴相关联,而在蛋白Loc中,V结构域通过一个平移分量为3.5埃的局部二重螺旋轴相关联。与之前表征的抗体结构中由V结构域相互作用形成的经典抗原结合“口袋”不同,蛋白Loc中的V区关联导致结合位点中央突出,突出两侧有凹槽。蛋白Loc的结构表明,免疫球蛋白在物理上能够形成比迄今所显现的更多样化的抗原结合位点谱。此外,结合位点这种不寻常的突出性质可能类似于某些抗独特型抗体所需的结构。而且,互补决定残基构成了两个独立凹槽的一部分。(摘要截短于250词)