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LALF32-51-E7, a HPV-16 therapeutic vaccine candidate, forms protein body-like structures when expressed in Nicotiana benthamiana leaves.

Plant Biotechnology Journal.. 2017-09; 
Romana J. R. Yanez,Renate Lamprecht,Milaid Granadillo,Isis Torrens,Elsa Arcalís,Eva Stöger,Edward P. Rybicki,Inga I. Hitzeroth.
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Peptide Synthesis ... tag and the stop codon, to add appropriate restriction enzyme (RE) sites and to insert a linker between the two peptides, as shown in Figure 1. The modified LALF32- 51-E7 was plant codon-optimized and synthesized by GenScript (USA). LALF32-51-E7 ... Get A Quote

Abstract

High-risk human papillomaviruses (HPVs) cause cervical cancer, and while there are good prophylactic vaccines on the market, these are ineffective against established infections, creating a clear need for therapeutic vaccines. The HPV E7 protein is one of the essential oncoproteins for the onset and maintenance of malignancy and is therefore an ideal therapeutic vaccine target. We fused the HPV-16 E7 protein to the Limulus polyphemus antilipopolysaccharide factor (LALF32-51), a small hydrophobic peptide that can penetrate cell membranes and that has immunomodulatory properties. LALF32-51-E7 was transiently expressed in Nicotiana benthamiana, and we previously determined that it accumulated better when targeted ... More

Keywords

protein bodies;chloroplasts; plant-produced;membrane-penetrating; HPV-16;therapeutic vaccine; E7.