The Division of Structural Biology, Henry Wellcome Building for Genomic Medicine, Roosevelt Drive, Oxford, OX3 7BN, UK.
The Division of Structural Biology, Henry Wellcome Building for Genomic Medicine, Roosevelt Drive, Oxford, OX3 7BN, UK; Research Complex at Harwell, R92 Rutherford Appleton Laboratory, Didcot, OX11 0FA, UK.
Mol Immunol. 2019 Aug;112:123-130. doi: 10.1016/j.molimm.2019.04.026. Epub 2019 May 14.
Cattle antibodies have unusually long CDR3 loops in their heavy chains (HCs), and limited light chain (LC) diversity, raising the question of whether these mask the effect of LC variation on antigen recognition. We have investigated the role of the LC in the structure and activity of two neutralizing cattle antibodies (B4 and B13) that bind the F protein of bovine respiratory syncytial virus (bRSV). Recombinant Fab fragments of B4 and B13 bound bRSV infected cells and showed similar affinities for purified bRSV F protein. Exchanging the LCs between the Fab fragments produced hybrid Fabs: B13* (B13 HC/B4 LC) and B4* (B4 HC/B13 LC). The affinity of B13* to the F protein was found to be two-fold lower than B13 whilst the binding affinity of B4* was reduced at least a hundred-fold compared to B4 such that it no longer bound to bRSV infected cells. Comparison of the structures of B4 and B13 with their LC exchanged counterparts B4* and B13* showed that paratope of the HC variable domain (VH) of B4 was disrupted on pairing with the B13 LC, consistent with the loss of binding activity. By contrast, B13 H3 adopts a similar conformation when paired with either B13 or B4 LCs. These observations confirm the expected key role of the extended H3 loop in antigen-binding by cattle antibodies but also show that the quaternary LC/HC subunit interaction can be crucial for its presentation and thus the LC variable domain (VL) is also important for antigen recognition.
牛抗体的重链(HC)中 CDR3 环非常长,轻链(LC)多样性有限,这引发了一个问题,即这些是否掩盖了 LC 变异对抗原识别的影响。我们研究了两种中和牛呼吸道合胞体病毒(bRSV)F 蛋白的牛抗体(B4 和 B13)在结构和活性中的 LC 作用。B4 和 B13 的 Fab 片段重组体与 bRSV 感染的细胞结合,并对纯化的 bRSV F 蛋白表现出相似的亲和力。在 Fab 片段之间交换 LC 产生了杂交 Fab:B13*(B13 HC/B4 LC)和 B4*(B4 HC/B13 LC)。发现 B13与 F 蛋白的亲和力比 B13 低两倍,而 B4的结合亲和力至少降低了 100 倍,以至于它不再与 bRSV 感染的细胞结合。B4 和 B13 的结构与交换了 LC 的对应物 B4和 B13的比较表明,B4 的 HC 可变域(VH)的变构位被与 B13 LC 配对破坏,这与结合活性的丧失一致。相比之下,B13 H3 与 B13 或 B4 LC 配对时采用相似的构象。这些观察结果证实了预期的牛抗体抗原结合中扩展的 H3 环的关键作用,但也表明四级 LC/HC 亚基相互作用对于其呈现至关重要,因此 LC 可变域(VL)对于抗原识别也很重要。