Laboratory of Cellular and Molecular Immunology, Vrije Universiteit Brussel, Brussels, Belgium.
J Immunol. 2010 May 15;184(10):5696-704. doi: 10.4049/jimmunol.0903722. Epub 2010 Apr 19.
It is well established that, in addition to conventional Abs, camelids (such as Camelus dromedarius and Lama glama) possess unique homodimeric H chain Abs (HCAbs) devoid of L chains. The Ag-binding site of these HCAbs consists of a single variable domain, referred to as VHH. It is widely accepted that these VHHs, with distinct framework-2 imprints evolved within the V(H) clan III-family 3, are exclusively present on HCAbs. In this study, we report the finding of a distinct leader signal sequence linked to variable genes displaying a high degree of homology to the clan II, human VH(4) family that contributes to the HCAb Ag-binding diversity. Although the VHH framework-2 imprints are clearly absent, their VH(4)-D-JH recombination products can be rearranged to the H chains of both classical and HCAbs. This suggests that for these V domains the presence of a L chain to constitute the Ag-binding site is entirely optional. As such, the capacity of this promiscuous VH(4) family to participate in two distinct Ab formats significantly contributes to the breadth of the camelid Ag-binding repertoire. This was illustrated by the isolation of stable, dendritic cell-specific VH(4) single domains from a VH(4)-HCAb phage display library. The high degree of homology with human VH(4) sequences is promising in that it may circumvent the need for "humanization" of such single-domain Abs in therapeutic applications.
众所周知,除了常规抗体(Abs)外,骆驼科动物(如单峰驼和羊驼)还具有独特的同型二聚体 H 链抗体(HCAbs),这些 HCAbs 缺乏轻链。这些 HCAbs 的抗原结合位点由一个单一的可变结构域组成,称为 VHH。人们普遍认为,这些 VHH 具有独特的框架 2 印记,是在 V(H)III 家族 3 中进化而来的,仅存在于 HCAbs 上。在这项研究中,我们报告了一个独特的信号序列与可变基因相连的发现,这些可变基因显示出与人类 VH(4)家族高度同源,有助于 HCAb 的抗原结合多样性。尽管 VHH 框架 2 印记明显缺失,但它们的 VH(4)-D-JH 重组产物可以重新排列到经典和 HCAbs 的 H 链上。这表明对于这些 V 结构域来说,存在一个轻链来构成抗原结合位点是完全可选的。因此,这个混杂的 VH(4)家族参与两种不同 Ab 形式的能力显著增加了骆驼科动物的抗原结合 repertoire。从 VH(4)-HCAb 噬菌体展示文库中分离出稳定的树突状细胞特异性 VH(4)单结构域,就说明了这一点。与人类 VH(4)序列的高度同源性很有希望,因为它可能避免了在治疗应用中对这些单结构域 Abs 进行“人源化”的需要。