Malby R L, McCoy A J, Kortt A A, Hudson P J, Colman P M
Biomolecular Research Institute, 343 Royal Parade, Parkville, 3052, Australia.
J Mol Biol. 1998 Jun 19;279(4):901-10. doi: 10.1006/jmbi.1998.1794.
The structure of the complex between a recombinant single-chain Fv construct of antibody NC10 with a five-residue peptide linker between VH and VL (termed scFv(5)), and its antigen, tetrameric neuraminidase from influenza virus (NA), has been determined and refined at 2.5 A resolution. The antibody-antigen binding interface is very similar to that of a similar NC10 scFv-NA complex in which the scFv has a 15-residue peptide linker (scFv(15)), and the NC10 Fab-NA complex. However, scFv(5) and scFv(15) have different stoichiometries in solution. While scFv(15) is predominantly monomeric in solution, scFv(5) forms dimers exclusively, because the five-residue linker is not long enough to permit VH and VL domains from the same polypeptide associating and forming an antigen-binding site. Upon forming a complex with NA, scFv(15) forms a approximately 300 kDa complex corresponding to one NA tetramer binding four scFv(15) monomers, while scFv(5) forms a approximately 590 kDa complex, corresponding to two NA tetramers crosslinked by four bivalent scFv(5) dimers. However, the dimeric scFv(5) in the scFv(5)-NA crystals does not crosslink NA tetramers, and modelling studies indicate that it is not possible to pack four dimeric and simultaneously bivalent scFvs between the NA tetramers with only a five-residue linker between VH and VL. The inability arises from the exacting requirement to orient the two antigen-binding surfaces to bind the tetrameric NA antigen while avoiding steric clashes with NC10 scFv(5) dimers bound to other sites on the NA tetramer. The utility of bivalent or bifunctional scFvs with short linkers may therefore be restricted by the steric constraints imposed by binding multivalent antigens.
已确定并以2.5埃分辨率优化了抗体NC10的重组单链Fv构建体(VH和VL之间带有五个残基的肽接头,称为scFv(5))与它的抗原——来自流感病毒的四聚体神经氨酸酶(NA)之间复合物的结构。该抗体-抗原结合界面与类似的NC10 scFv-NA复合物(其中scFv带有15个残基的肽接头(scFv(15)))以及NC10 Fab-NA复合物的结合界面非常相似。然而,scFv(5)和scFv(15)在溶液中的化学计量不同。虽然scFv(15)在溶液中主要以单体形式存在,但scFv(5)仅形成二聚体,因为五个残基的接头不够长,无法使同一多肽的VH和VL结构域相互结合并形成抗原结合位点。与NA形成复合物后,scFv(15)形成约300 kDa的复合物,对应于一个NA四聚体结合四个scFv(15)单体,而scFv(5)形成约590 kDa的复合物,对应于由四个二价scFv(5)二聚体交联的两个NA四聚体。然而,scFv(5)-NA晶体中的二聚体scFv(5)不会交联NA四聚体,建模研究表明,在VH和VL之间只有五个残基接头的情况下,不可能在NA四聚体之间排列四个二聚体且同时具有二价性的scFv。这种无能是由于精确要求两个抗原结合表面以结合四聚体NA抗原,同时避免与结合在NA四聚体其他位点上的NC10 scFv(5)二聚体发生空间冲突。因此,具有短接头的二价或双功能scFv的效用可能会受到结合多价抗原所施加的空间限制。