首页> 美国卫生研究院文献>Biochemical Journal >Crystal structure of the anti-(carcinoembryonic antigen) single-chain Fv antibody MFE-23 and a model for antigen binding based on intermolecular contacts.
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Crystal structure of the anti-(carcinoembryonic antigen) single-chain Fv antibody MFE-23 and a model for antigen binding based on intermolecular contacts.

机译:抗(癌胚抗原)单链Fv抗体MFE-23的晶体结构和基于分子间接触的抗原结合模型。

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摘要

MFE-23 is the first single-chain Fv antibody molecule to be used in patients and is used to target colorectal cancer through its high affinity for carcinoembryonic antigen (CEA), a cell-surface member of the immunoglobulin superfamily. MFE-23 contains an N-terminal variable heavy-chain domain joined by a (Gly(4)Ser)(3) linker to a variable light-chain (V(L)) domain (kappa chain) with an 11-residue C-terminal Myc-tag. Its crystal structure was determined at 2.4 A resolution by molecular replacement with an R(cryst) of 19.0%. Five of the six antigen-binding loops, L1, L2, L3, H1 and H2, conformed to known canonical structures. The sixth loop, H3, displayed a unique structure, with a beta-hairpin loop and a bifurcated apex characterized by a buried Thr residue. In the crystal lattice, two MFE-23 molecules were associated back-to-back in a manner not seen before. The antigen-binding site displayed a large acidic region located mainly within the H2 loop and a large hydrophobic region within the H3 loop. Even though this structure is unliganded within the crystal, there is an unusually large region of contact between the H1, H2 and H3 loops and the beta-sheet of the V(L) domain of an adjacent molecule (strands DEBA) as a result of intermolecular packing. These interactions exhibited remarkably high surface and electrostatic complementarity. Of seven MFE-23 residues predicted to make contact with antigen, five participated in these lattice contacts, and this model for antigen binding is consistent with previously reported site-specific mutagenesis of MFE-23 and its effect on CEA binding.
机译:MFE-23是第一个用于患者的单链Fv抗体分子,通过对免疫球蛋白超家族的细胞表面成员癌胚抗原(CEA)的高度亲和力而用于靶向结直肠癌。 MFE-23包含由(Gly(4)Ser)(3)接头与具有11个残基C的可变轻链(V(L))域(κ链)连接的N末端可变重链结构域-末端Myc标签。通过分子置换(R(晶体)为19.0%)以2.4 A的分辨率确定其晶体结构。六个抗原结合环中的五个L1,L2,L3,H1和H2符合已知的规范结构。第六环H3显示出独特的结构,带有一个β-发夹环和一个分叉的先端,其特征是掩埋的Thr残基。在晶格中,两个MFE-23分子以前所未有的方式背对背关联。抗原结合位点显示出主要位于H2环内的大酸性区和H3环内的大疏水区。即使这种结构在晶体中是未配位的,由于以下原因,H1,H2和H3环与相邻分子(DEBA链)的V(L)域的β-折叠之间仍存在异常大的接触区域。分子间堆积。这些相互作用表现出非常高的表面和静电互补性。在预计与抗原接触的7个MFE-23残基中,有5个参与了这些晶格接触,并且这种抗原结合模型与先前报道的MFE-23的位点特异性诱变及其对CEA结合的影响相一致。

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