Selective disulfide reduction for labeling and enhancement of Fab antibody fragments

化学 TCEP 半胱氨酸 二硫键 共价键 组合化学 马来酰亚胺 生物素化 二硫苏糖醇 试剂 还原剂 荧光 立体化学 生物化学 有机化学 磷化氢 催化作用 物理 量子力学
作者
Terence L. Kirley,Kenneth D. Greis,Andrew B. Norman
出处
期刊:Biochemical and Biophysical Research Communications [Elsevier BV]
卷期号:480 (4): 752-757 被引量:29
标识
DOI:10.1016/j.bbrc.2016.10.128
摘要

Many methods have been developed for chemical labeling and enhancement of the properties of antibodies and their common fragments, including the Fab and F(ab’)2 fragments. Somewhat selective reduction of some antibody disulfide bonds has been previously achieved, yielding antibodies and antibody fragments that can be labeled at defined sites, enhancing their utility and properties. Selective reduction of the two hinge disulfide bonds present in F(ab’)2 fragments using mild reduction has been useful. However, such reduction is often not quantitative and results in the reduction of multiple disulfide bonds, and therefore subsequent multiple labeling or conjugation sites are neither homogenous nor stoichiometric. Here, a simple and efficient selective reduction of the single disulfide bond linking the partial heavy chain and the intact light chain which compose the Fab fragment is accomplished utilizing tris(2-carboxyethyl)phosphine (TCEP) immobilized on agarose beads. The resultant reduced cysteine residues were labeled with several cysteine-selective fluorescent reagents, as well as by cysteine-directed PEGylation. These two cysteine residues can also be re-ligated by means of a bifunctional cysteine cross-linking agent, dibromobimane, thereby both restoring a covalent linkage between the heavy and light chains at this site, far removed from the antigen binding site, and also introducing a fluorescent probe. There are many other research and clinical uses for these selectively partially reduced Fab fragments, including biotinylation, toxin and drug conjugation, and incorporation of radioisotopes, and this technique enables simple generation of very useful Fab fragment derivatives with many potential applications.
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