Selected article for: "shift site and UGA codon"

Author: Henderson, Clark M.; Anderson, Christine B.; Howard, Michael T.
Title: Antisense-induced ribosomal frameshifting
  • Document date: 2006_8_18
  • ID: xgwbl8em_32
    Snippet: To determine whether the stop codon of the shift site is essential for frameshifting, the UGA codon of p2luc-AZ1FS was altered to UGG such that the shift site was UCC UGG (p2luc-AZ1-UGG). Frameshift efficiency was significant, but reduced, compared to the shift site UCC UGA, and shows little stimulation by the addition of spermidine; AZ1A, AZ1B and AZ1C induced 3, 1 and 1.4% frameshifting in the presence of spermidine, and 1.9, 0.8 and 1.7% frame.....
    Document: To determine whether the stop codon of the shift site is essential for frameshifting, the UGA codon of p2luc-AZ1FS was altered to UGG such that the shift site was UCC UGG (p2luc-AZ1-UGG). Frameshift efficiency was significant, but reduced, compared to the shift site UCC UGA, and shows little stimulation by the addition of spermidine; AZ1A, AZ1B and AZ1C induced 3, 1 and 1.4% frameshifting in the presence of spermidine, and 1.9, 0.8 and 1.7% frameshifting in its absence, respectively ( Figure 5C and D) .

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