Identification of the dominant translation start site in the attB1 sequence of the pET-DEST42 Gateway vector

Gateway technology is a powerful system for converting a single entry vector into a wide variety of expression vectors. We expressed recombinant influenza matrix protein M1 (FMP), a potent antigen for cytotoxic T cells, using the Gateway vector pET-DEST42 containing the FMP cDNA, and purified the ex...

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Veröffentlicht in:Protein expression and purification 2006-09, Vol.49 (1), p.102-107
Hauptverfasser: Khan, Seema, Hsu, Rachel, Jones, Alun, Ross, Ian L., Hart, Derek N.J., Kato, Masato
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Sprache:eng
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Zusammenfassung:Gateway technology is a powerful system for converting a single entry vector into a wide variety of expression vectors. We expressed recombinant influenza matrix protein M1 (FMP), a potent antigen for cytotoxic T cells, using the Gateway vector pET-DEST42 containing the FMP cDNA, and purified the expressed FMP as a single 32 kDa recombinant protein. N-terminal and internal protein sequencing, however, showed that the recombinant FMP contained an extra 10 amino acids fused to the N-terminal of native FMP. Further investigation of the DNA sequence adjacent to the 5′-FMP cDNA indicated that the “TTG” in the attB1 site (30 bp upstream of the “ATG” in the 5′-FMP cDNA) behaved as a dominant translation start site, resulting in a 10 amino acid extension of the recombinant FMP. Thus, it is possible that recombinant proteins produced by this Gateway vector contain unexpected vector-derived peptides, which may affect experimental outcomes.
ISSN:1046-5928
1096-0279
DOI:10.1016/j.pep.2006.05.001