Tobacco chloroplast transformation vectors comprising a multi-gene operon encoding a biopharmaceutical protein and a chaperonin
View Patent ↗The subject invention relates in part to tobacco chloroplast transformation vectors comprising a multi-gene operon that generates a polycistron that encodes a biopharmaceutical protein and a chaperonin.
1. A tobacco chloroplast transformation and expression vector which is capable of introducing multiple genes in a multi-gene operon into a selected tobacco plant by a single integration event, said vector comprising as operably linked components,
a first flanking sequence complementary to a first sequence of a tobacco chloroplast genome,
a tobacco chloroplast promoter operably linked to a multi-gene operon,
a transcription termination region functional in a tobacco chloroplast, and
a second flanking sequence complementary to a second sequence of said tobacco chloroplast genome,
said multi-gone operon comprising a first open reading frame encoding a first protein and a second open reading frame encoding a second protein,
wherein transcription of said multi-gene operon generates a polycistron encoding said fast protein and said second protein,
wherein one of said proteins is a biopharmaceutical protein selected from the group consisting of insulin or human serum albumin, and
wherein one of said proteins is a chaperonin,
whereby integration of the vector into said chloroplast genome comprising said first sequence and said second sequence is facilitated through homologous recombination of the flanking sequences and the chloroplast genome sequences.
2. A tobacco chloroplast transformation and expression vector which is capable of introducing multiple genes in a multi-gene operon into a selected tobacco plant by a single integration event, said vector comprising as operably linked components,
a first flanking sequence complementary to a first sequence of a tobacco chloroplast genome,
a tobacco chloroplast promoter operably linked to a multi-gene operon,
a transcription termination region functional in a tobacco chloroplast, and
a second flanking sequence complementary to a second sequence of said tobacco chloroplast genome,
said multi-gene operon comprising a first open reading frame encoding a first protein, a second open reading frame encoding a second protein, and a third open reading frame encoding a third protein,
wherein transcription of said multi-gene operon generates a polycistron encoding said first protein, said second protein, and said third protein, and
wherein one protein is a biopharmaceutical protein, one protein is a chaperonin, and one protein is a selectable marker,
whereby integration of the vector into said chloroplast genome comprising said first sequence and said second sequence is facilitated through homologous recombination of the flanking sequences and the chloroplast genome sequences.