Turner Kendrick B, Liu Jinny L, Zabetakis Dan, Lee Audrey Brozozog, Anderson George P, Goldman Ellen R
American Society for Engineering Education, Postdoctoral Fellow at the Naval Research Laboratory, Washington, DC 20375, USA.
Center for Biomolecular Science and Engineering, Naval Research Laboratory, Washington, DC 20375, USA.
Biotechnol Rep (Amst). 2015 Jan 15;6:27-35. doi: 10.1016/j.btre.2015.01.001. eCollection 2015 Jun.
Single-domain antibodies (sdAbs) derived from heavy-chain only antibodies produced in camelids are attractive immunoreagents due to their small size, high affinity, and ability to refold and retain binding activity after denaturation. It has been observed that some sdAbs, however, exhibit undesirable properties including reduced solubility when subjected to heating or upon long-term storage at production-relevant concentrations, which can limit their usefulness. Using a multi-step, rational design approach that included consensus-sequence driven sequence repairs, the alteration of net protein charge, and the introduction of non-native disulfide bonds, augmented solubility and increased melting temperatures were achieved. The improved sdAbs tolerated storage in solution at high concentration (10 mg/mL) and were able to withstand multiple cycles of heating to high temperature (70 °C). This work demonstrates a pathway for improving the biophysical characteristics of sdAbs which is essential for expanding their utility for both diagnostic as well as therapeutic applications.
源自骆驼科动物产生的仅重链抗体的单域抗体(sdAbs)是具有吸引力的免疫试剂,因其尺寸小、亲和力高,且在变性后能够重新折叠并保留结合活性。然而,已经观察到一些单域抗体表现出不良特性,包括在加热或在生产相关浓度下长期储存时溶解度降低,这可能会限制它们的用途。通过一种多步骤的合理设计方法,包括基于共有序列驱动的序列修复、净蛋白质电荷的改变以及引入非天然二硫键,实现了溶解度的提高和熔解温度的升高。改进后的单域抗体能够耐受高浓度(10 mg/mL)溶液中的储存,并能够承受多次高温(70°C)加热循环。这项工作展示了一条改善单域抗体生物物理特性的途径,这对于扩大其在诊断和治疗应用中的效用至关重要。