Modality Research Laboratories, R&D Division, Daiichi Sankyo Co., Ltd., Shinagawa R&D Center, 1-2-58 Hiromachi, Shinagawa-ku, Tokyo, 140-8710, Japan.
Graduate School of Pharmaceutical Sciences, Osaka University, 1-6 Yamadaoka, Suita, Osaka, 565-0871, Japan.
Sci Rep. 2017 Jul 19;7(1):5794. doi: 10.1038/s41598-017-06277-x.
Single domain antibodies (sdAbs), made of natural single variable regions of camelid or cartilaginous fish antibodies, or unpaired variable regions of mouse or human IgGs, are some of the more promising biologic modalities. However, such conventional sdAbs have difficulties of either using unwieldy animals for immunization or having high affinity deficiencies. Herein, we offer a versatile method to generate rabbit variable domain of heavy chain (rVH) derived sdAbs with high affinities (K values of single digit nM or less) and enhanced thermal stabilities (equal to or even higher than those of camelid derived sdAbs). It was found that a variety of rVH binders, including those with high affinities, were efficiently acquired using an rVH-displaying phage library produced at a low temperature of 16 °C. By a simple method to introduce an additional disulfide bond, their unfolding temperatures were increased by more than 20 °C without severe loss of binding affinity. Differential scanning calorimetry analysis suggested that this highly efficient thermal stabilization was mainly attributed to the entropic contribution and unique thermodynamic character of the rVHs.
单域抗体(sdAb)由骆驼或软骨鱼抗体的天然单可变区或小鼠或人 IgG 的未配对可变区组成,是更有前途的生物模式之一。然而,此类常规 sdAb 在免疫时使用难以驾驭的动物或存在高亲和力缺陷方面存在困难。在此,我们提供了一种通用方法,可产生具有高亲和力(Kd 值为个位数 nM 或更低)和增强热稳定性(等于或甚至高于骆驼衍生 sdAb)的兔重链可变区(rVH)衍生 sdAb。研究发现,使用在 16°C 的低温下产生的 rVH 展示噬菌体文库,可以高效获得多种 rVH 结合物,包括具有高亲和力的结合物。通过一种简单的方法引入额外的二硫键,它们的解折叠温度提高了 20°C 以上,而结合亲和力没有严重损失。差示扫描量热法分析表明,这种高效的热稳定性主要归因于 rVHs 的熵贡献和独特的热力学特性。