Afonin P V, Fokin A V, Tsygannik I N, Mikhailova I Y, Onoprienko L V, Mikhaleva I I, Ivanov V T, Mareeva T Y, Nesmeyanov V A, Li N, Pangborn W A, Duax W L, Pletnev V Z
Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, 117871 Moscow, Russia.
Protein Sci. 2001 Aug;10(8):1514-21. doi: 10.1110/ps.3101.
The three-dimensional structure of the Fab fragment of a monoclonal antibody (LNKB-2) to human interleukin-2 (IL-2) complexed with a synthetic antigenic nonapeptide, Ac-Lys-Pro-Leu-Glu-Glu-Val-Leu-Asn-Leu-OMe, has been determined at 3.0 A resolution. In the structure, four out of the six hypervariable loops of the Fab (complementarity determining regions [CDRs] L1, H1, H2, and H3) are involved in peptide association through hydrogen bonding, salt bridge formation, and hydrophobic interactions. The Tyr residues in the Fab antigen binding site play a major role in antigen-antibody recognition. The structures of the complexed and uncomplexed Fab were compared. In the antigen binding site the CDR-L1 loop of the antibody shows the largest structural changes upon peptide binding. The peptide adopts a mostly alpha-helical conformation similar to that in the epitope fragment 64-72 of the IL-2 antigen. The side chains of residues Leu 66, Val 69, and Leu 70, which are shielded internally in the IL-2 structure, are involved in interactions with the Fab in the complex studied. This indicates that antibody-antigen complexation involves a significant rearrangement of the epitope-containing region of the IL-2 with retention of the alpha-helical character of the epitope fragment.
已确定一种针对人白细胞介素-2(IL-2)的单克隆抗体(LNKB-2)的Fab片段与合成抗原九肽Ac-Lys-Pro-Leu-Glu-Glu-Val-Leu-Asn-Leu-OMe复合后的三维结构,分辨率为3.0埃。在该结构中,Fab的六个高变环中的四个(互补决定区[CDR]L1、H1、H2和H3)通过氢键、盐桥形成和疏水相互作用参与肽的结合。Fab抗原结合位点中的Tyr残基在抗原-抗体识别中起主要作用。比较了复合和未复合Fab的结构。在抗原结合位点,抗体的CDR-L1环在肽结合时显示出最大的结构变化。该肽呈现出与IL-2抗原表位片段64-72中相似的主要α-螺旋构象。在IL-2结构中内部被屏蔽的Leu 66、Val 69和Leu 70残基的侧链参与了所研究复合物中与Fab的相互作用。这表明抗体-抗原复合涉及IL-2含表位区域的显著重排,同时保留表位片段的α-螺旋特征。