UCB Pharma Slough, 208 Bath Road, Slough SL1 3WE, United Kingdom.
J Biol Chem. 2012 Jul 13;287(29):24525-33. doi: 10.1074/jbc.M112.369744. Epub 2012 May 18.
The integrity of antibody structure, stability, and biophysical characterization are becoming increasingly important as antibodies receive increasing scrutiny from regulatory authorities. We altered the disulfide bond arrangement of an IgG4 molecule by mutation of the Cys at the N terminus of the heavy chain constant domain 1 (C(H)1) (Kabat position 127) to a Ser and introduction of a Cys at a variety of positions (positions 227-230) at the C terminus of C(H)1. An inter-LC-C(H)1 disulfide bond is thus formed, which mimics the disulfide bond arrangement found in an IgG1 molecule. The antibody species present in the supernatant following transient expression in Chinese hamster ovary cells were analyzed by immunoblot to investigate product homogeneity, and purified product was analyzed by a thermofluor assay to determine thermal stability. We show that the light chain can form an inter-LC-C(H)1 disulfide bond with a Cys when present at several positions on the upper hinge (positions 227-230) and that such engineered disulfide bonds can consequently increase the Fab domain thermal stability between 3 and 6.8 °C. The IgG4 disulfide mutants displaying the greatest increase in Fab thermal stability were also the most homogeneous in terms of disulfide bond arrangement and antibody species present. Importantly, mutations did not affect the affinity for antigen of the resultant molecules. In combination with the previously described S241P mutation, we present an IgG4 molecule with increased Fab thermal stability and reduced product heterogeneity that potentially offers advantages for the production of IgG4 molecules.
抗体结构的完整性、稳定性和生物物理特性的表征正变得越来越重要,因为抗体受到监管机构越来越严格的审查。我们通过突变 IgG4 分子重链恒定区 1(C(H)1)N 末端的 Cys(Kabat 位置 127)为 Ser,并在 C(H)1 的 C 末端的各种位置(位置 227-230)引入 Cys,改变了二硫键的排列。因此形成了一个 LC-C(H)1 间二硫键,模拟了 IgG1 分子中发现的二硫键排列。通过免疫印迹分析瞬时表达在中国仓鼠卵巢细胞中的上清液中存在的抗体种类,以研究产物均一性,并通过热荧光测定法分析纯化产物,以确定热稳定性。我们表明,当轻链位于铰链的上半部分的几个位置(位置 227-230)时,可以与 Cys 形成 LC-C(H)1 间二硫键,并且这种工程化的二硫键可以使 Fab 结构域的稳定性提高 3 到 6.8°C。在 Fab 热稳定性方面显示出最大增加的 IgG4 二硫键突变体在二硫键排列和存在的抗体种类方面也最均一。重要的是,突变不影响所得分子对抗原的亲和力。结合之前描述的 S241P 突变,我们提出了一种具有增加的 Fab 热稳定性和降低的产物异质性的 IgG4 分子,这可能为 IgG4 分子的生产提供优势。