重组DNA
融合蛋白
标志标签
免疫原性
麦芽糖结合蛋白
Myc标签
单克隆抗体
蛋白质标签
链霉亲和素
生物化学
亲和层析
蛋白质工程
生物素化
分子生物学
生物
化学
抗体
生物素
酶
基因
免疫学
作者
Saman Soleimanpour,Tahereh Hassannia,Motiee Mahdieh,Abbas Amini,Seyed Abdolrahim Rezaee
标识
DOI:10.3109/07388551.2016.1163323
摘要
Affinity tags are vital tools for the production of high-throughput recombinant proteins. Several affinity tags, such as the hexahistidine tag, maltose-binding protein, streptavidin-binding peptide tag, calmodulin-binding peptide, c-Myc tag, glutathione S-transferase and FLAG tag, have been introduced for recombinant protein production. The fragment crystallizable (Fc) domain of the IgG1 antibody is one of the useful affinity tags that can facilitate detection, purification and localization of proteins and can improve the immunogenicity, modulatory effects, physicochemical and pharmaceutical properties of proteins. Fcγ recombinant forms a group of recombinant proteins called Fc-fusion proteins (FFPs). FFPs are widely used in drug discovery, drug delivery, vaccine design and experimental research on receptor-ligand interactions. These fusion proteins have become successful alternatives to monoclonal antibodies for drug developments. In this review, the physicochemical, biochemical, immunological, pharmaceutical and therapeutic properties of recombinant FFPs were discussed as a new generation of bioengineering strategies.
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