Turner Kendrick B, Zabetakis Dan, Goldman Ellen R, Anderson George P
American Society for Engineering Education Postdoctoral Fellow, Naval Research Laboratory, Washington, DC 20375, USA.
Protein Eng Des Sel. 2014 Mar;27(3):89-95. doi: 10.1093/protein/gzu001. Epub 2014 Jan 30.
Single domain antibodies, recombinant variable heavy domains derived from the unique heavy-chain only antibodies found in camelids and sharks, are exceptionally rugged due to their ability to refold following heat or chemical denaturation. In addition, a number of single domain antibodies have been found to possess high melting points which provide an even greater degree of stability; one of these, llama-derived A3, is a binder of Staphylococcal enterotoxin B and has a Tm of 83.5 °C. In this work, we utilized random mutagenesis and stringent selection in an effort to obtain variants of A3 with even higher melting points. This effort resulted in the selection of a double mutant, A3-T28I-S72I, which has a melting point of 90.0 °C and near wild-type affinity for the target antigen. We further characterized the mutations individually to determine that while both contributed to the thermal stabilization, the T28I mutation accounted for ∼ 4.1 °C of the 6.5 °C increase. This work demonstrates that by the addition of relatively subtle changes it is possible to further improve the melting temperature of single domain antibodies that are already remarkably stable.
单域抗体是骆驼科动物和鲨鱼体内仅重链抗体独特重链衍生而来的重组可变重链结构域,由于其在热变性或化学变性后能够重新折叠,因而异常坚固。此外,已发现许多单域抗体具有较高的熔点,这提供了更高程度的稳定性;其中一种源自羊驼的A3是葡萄球菌肠毒素B的结合物,其熔点为83.5℃。在这项研究中,我们利用随机诱变和严格筛选,试图获得熔点更高的A3变体。这项工作筛选出了一个双突变体A3-T28I-S72I,其熔点为90.0℃,对靶抗原的亲和力接近野生型。我们进一步分别对这些突变进行了表征,以确定虽然两者都有助于热稳定性的提高,但T28I突变在6.5℃的熔点升高中占了约4.1℃。这项研究表明,通过添加相对细微的变化,可以进一步提高已经非常稳定的单域抗体的熔点。