Feng Yang, Gong Rui, Dimitrov Dimiter S
Protein Interactions Group, CCR Nanobiology Program, NCI-Frederick, NIH, Frederick, MD 21702, United States.
Protein Expr Purif. 2011 Sep;79(1):66-71. doi: 10.1016/j.pep.2011.03.012. Epub 2011 Mar 29.
The neonatal Fc receptor (FcRn) is responsible for transporting maternal IgGs to fetus/newborns and maintaining the homeostasis of IgGs in adults. FcRn resembles class I major histocompatibility complex in structure, and is composed of a transmembrane heavy chain and an invariant beta 2 microglobulin. Changes in the affinity of IgGs to FcRn lead to changes in the half-life of engineered IgGs and Fc fusion proteins. Longer half-life of therapeutic antibodies means lower dose and longer interval between administering. For some diagnostic agents including imaging or radio-labeled agents a shorter half life in circulation results in lower non-specific binding and decreased side effects. Therefore, studying the interaction of FcRn and therapeutic antibodies has direct clinical implications. A reliable method to prepare soluble and functional FcRn protein is essential for such studies. In this study, we describe a new method to express in mammalian cells soluble human FcRn (sFcRn) as a single-chain soluble fusion protein. The highly hydrophilic beta 2 microglobulin was joined with the hydrophobic heavy chain via a 15 amino acid linker. The single-chain fusion protein format not only improved the expression level of the heavy chain but also simplified the purification process. The sFcRn maintained its pH-dependent binding to IgG. This method typically yielded ∼1 mg/100ml culture without optimization, and is easy to scale up for production of large quantities.
新生儿Fc受体(FcRn)负责将母体IgG转运至胎儿/新生儿,并维持成人IgG的体内平衡。FcRn在结构上类似于I类主要组织相容性复合体,由一条跨膜重链和一条恒定的β2微球蛋白组成。IgG与FcRn亲和力的变化会导致工程化IgG和Fc融合蛋白半衰期的改变。治疗性抗体较长的半衰期意味着较低的剂量和给药间隔时间。对于一些诊断试剂,包括成像或放射性标记试剂,较短的循环半衰期会导致较低的非特异性结合并减少副作用。因此,研究FcRn与治疗性抗体的相互作用具有直接的临床意义。一种制备可溶性且具有功能的FcRn蛋白的可靠方法对于此类研究至关重要。在本研究中,我们描述了一种在哺乳动物细胞中表达可溶性人FcRn(sFcRn)作为单链可溶性融合蛋白的新方法。高度亲水的β2微球蛋白通过一个15个氨基酸的接头与疏水重链相连。单链融合蛋白形式不仅提高了重链的表达水平,还简化了纯化过程。sFcRn保持了其对IgG的pH依赖性结合。该方法在未经优化的情况下通常每100ml培养物可产生约1mg蛋白,并且易于扩大规模以大量生产。