Laboratory of Cellular and Molecular Immunology, Vrije Universiteit Brussel, Pleinlaan 2, B-1050 Brussels, Belgium.
J Biol Chem. 2012 Jan 13;287(3):1970-9. doi: 10.1074/jbc.M111.242818. Epub 2011 Nov 29.
The antigen-binding fragment of functional heavy chain antibodies (HCAbs) in camelids comprises a single domain, named the variable domain of heavy chain of HCAbs (VHH). The VHH harbors remarkable amino acid substitutions in the framework region-2 to generate an antigen-binding domain that functions in the absence of a light chain partner. The substitutions provide a more hydrophilic, hence more soluble, character to the VHH but decrease the intrinsic stability of the domain. Here we investigate the functional role of an additional hallmark of dromedary VHHs, i.e. the extra disulfide bond between the first and third antigen-binding loops. After substituting the cysteines forming this interloop cystine by all 20 amino acids, we selected and characterized several VHHs that retain antigen binding capacity. Although VHH domains can function in the absence of an interloop disulfide bond, we demonstrate that its presence constitutes a net advantage. First, the disulfide bond stabilizes the domain and counteracts the destabilization by the framework region-2 hallmark amino acids. Second, the disulfide bond rigidifies the long third antigen-binding loop, leading to a stronger antigen interaction. This dual beneficial effect explains the in vivo antibody maturation process favoring VHH domains with an interloop disulfide bond.
骆驼科功能性重链抗体(HCAbs)的抗原结合片段由单个结构域组成,称为 HCAbs 的重链可变域(VHH)。VHH 在框架区-2 中具有显著的氨基酸取代,从而产生在没有轻链伴侣的情况下起作用的抗原结合结构域。这些取代赋予 VHH 更亲水、因此更具可溶性的特性,但降低了该结构域的固有稳定性。在这里,我们研究了骆驼 VHH 的另一个标志特征,即第一个和第三个抗原结合环之间额外的二硫键的功能作用。在用所有 20 种氨基酸取代形成该环间半胱氨酸的半胱氨酸后,我们选择并表征了几个保留抗原结合能力的 VHH。尽管 VHH 结构域可以在没有环间二硫键的情况下发挥作用,但我们证明其存在构成了净优势。首先,二硫键稳定了结构域,并抵消了框架区-2 标志氨基酸的去稳定化作用。其次,二硫键使长的第三个抗原结合环僵化,导致更强的抗原相互作用。这种双重有益效果解释了体内抗体成熟过程有利于具有环间二硫键的 VHH 结构域。