Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6491598 | Journal of Biotechnology | 2014 | 8 Pages |
Abstract
Tumor necrosis factor alpha (TNF) plays a pivotal role in chronic inflammatory diseases such as rheumatoid arthritis and Crohn's disease. Although anti-TNF antibody therapy is now commonly used to treat patients suffering from these inflammatory conditions, the cost of treatment continues to be a concern. Here, we developed a rice transgenic system for the production of a llama variable domain of a heavy-chain antibody fragment (VHH) specific for mouse TNF in rice seeds (MucoRice-mTNF-VHH). MucoRice-mTNF-VHH was produced at high levels in the rice seeds when we used our most recent transgene-overexpression system with RNA interference technology that suppresses the production of major rice endogenous storage proteins while enhancing the expression of the transgene-derived protein. Production levels of mTNF-VHH in rice seeds reached an average of 1.45% (w/w). Further, approximately 91% of mTNF-VHH was released easily when the powder form of MucoRice-mTNF-VHH was mixed with PBS. mTNF-VHH purified by means of single-step gel filtration from rice PBS extract showed high neutralizing activity in an in vitro mTNF cytotoxicity assay using WEHI164 cells. In addition, purified mTNF-VHH suppressed progression of collagen-induced arthritis in mice. These results show that this rice-expression system is useful for the production of neutralizing VHH antibody specific for mTNF.
Keywords
PBSbovine type II collagenTNFT-DNAmTNFVHHTNFRCIICTBGSTRNA interferenceRNAicollagen-induced arthritisSingle domain antibodySDS-polyacrylamide gel electrophoresisSDS-PAGEtransfer DNAELISAEnzyme-linked immunosorbent assaytumor necrosis factor alphaCIAtumor necrosis factorPhosphate buffered salineNanobodywild-typeAntibodycholera toxin B subunitglutathione S-transferasePlantTNF receptor
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Bioengineering
Authors
Michiyo Abe, Yoshikazu Yuki, Shiho Kurokawa, Mio Mejima, Masaharu Kuroda, Eun Jeong Park, Jürgen Scheller, Ushio Nakanishi, Hiroshi Kiyono,