TY - JOUR
T1 - Synthesis and assembly of SIVmac Gag p27 capsid protein cholera toxin B subunit fusion protein in transgenic potato
AU - Kim, Tae Geum
AU - Gruber, Andreas
AU - Ruprecht, Ruth M.
AU - Langridge, William H.R.
N1 - Funding Information:
The authors would like to thank Dr. John Mekalanos, Harvard University Medical School, for the gift of plasmid pRT42 containing ctxAB from the Classical Vibrio cholerae strain 569B. This research was supported in part by NIH grant P01 AI48240 to Dr. Ruth Ruprecht and by an intramural grant from Loma Linsa University to Dr. William H. R. Langridge.
PY - 2004/9
Y1 - 2004/9
N2 - A deoxyribonucleic acid (DNA) fragment encoding the cholera toxin B subunit (CTB) was linked 5′ to the simian immunodeficiency virus (SIV mac) Gag p27 capsid gene (CTB-Gag). The fusion gene was transferred into Solanum tuberosum cells by Agrobacterium tumefaciens-mediated transformation methods and transformed plants regenerated. The CTB-Gag gene fusion was detected in transformed potato leaf genomic DNA by polymerase chain reaction-mediated DNA amplification. The results of immunoblot analysis with anti-CTB and anti-Gag antibodies verified the synthesis of biologically active CTB-Gag fusion protein in transformed leaf and tuber tissues. Synthesis and assembly of the CTB-Gag fusion protein into oligomeric structures of pentamer size was confirmed by GM1-ganglioside-enzyme-linked immunosorbent assay (GM1-ELISA) of transformed potato tuber tissue extracts. The binding of CTB-Gag fusion protein oligomers to intestinal epithelial cell membrane receptors quantified by GM1-ELISA showed that CTB-Gag fusion protein made up approx 0.016-0.022% of the total soluble tuber protein. The synthesis of CTB-Gag monomers and their assembly into biologically active CTB-Gag fusion protein oligomers in potato tuber tissues provides the opportunity for employment of the carrier and adjuvant properties of CTB for the development of edible plant-based subunit mucosal vaccines for enhanced mucosal immunity against SIV in macaques. © 2004 Humana Press Inc. All rights of any nature whatsoever reserved.
AB - A deoxyribonucleic acid (DNA) fragment encoding the cholera toxin B subunit (CTB) was linked 5′ to the simian immunodeficiency virus (SIV mac) Gag p27 capsid gene (CTB-Gag). The fusion gene was transferred into Solanum tuberosum cells by Agrobacterium tumefaciens-mediated transformation methods and transformed plants regenerated. The CTB-Gag gene fusion was detected in transformed potato leaf genomic DNA by polymerase chain reaction-mediated DNA amplification. The results of immunoblot analysis with anti-CTB and anti-Gag antibodies verified the synthesis of biologically active CTB-Gag fusion protein in transformed leaf and tuber tissues. Synthesis and assembly of the CTB-Gag fusion protein into oligomeric structures of pentamer size was confirmed by GM1-ganglioside-enzyme-linked immunosorbent assay (GM1-ELISA) of transformed potato tuber tissue extracts. The binding of CTB-Gag fusion protein oligomers to intestinal epithelial cell membrane receptors quantified by GM1-ELISA showed that CTB-Gag fusion protein made up approx 0.016-0.022% of the total soluble tuber protein. The synthesis of CTB-Gag monomers and their assembly into biologically active CTB-Gag fusion protein oligomers in potato tuber tissues provides the opportunity for employment of the carrier and adjuvant properties of CTB for the development of edible plant-based subunit mucosal vaccines for enhanced mucosal immunity against SIV in macaques. © 2004 Humana Press Inc. All rights of any nature whatsoever reserved.
KW - AIDS
KW - Edible vaccine
KW - Gag
KW - SIV
KW - Solanum tuberosum
KW - Gene Transfer Techniques
KW - Recombinant Fusion Proteins/analysis
KW - DNA/analysis
KW - Gene Products, gag/biosynthesis
KW - Cholera Toxin/biosynthesis
KW - Plant Leaves/chemistry
KW - Capsid Proteins/genetics
KW - Agrobacterium tumefaciens/genetics
KW - Solanum tuberosum/genetics
KW - Plants, Genetically Modified/genetics
UR - https://www.scopus.com/pages/publications/20444423184
UR - https://www.scopus.com/pages/publications/20444423184#tab=citedBy
UR - https://www.mendeley.com/catalogue/19edb139-59d8-369e-a7dc-841d85ddf3ea/
U2 - 10.1385/MB:28:1:33
DO - 10.1385/MB:28:1:33
M3 - Article
C2 - 15456961
SN - 1073-6085
VL - 28
SP - 33
EP - 40
JO - Molecular Biotechnology
JF - Molecular Biotechnology
IS - 1
ER -