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1  exon that replaces an arginine codon with a translation termination codon.
2 ng frame was disrupted by the insertion of a translation termination codon.
3 cated 30 to 70 nucleotides downstream of the translation termination codon.
4 loop, thereby changing the distance from the translation termination codon.
5 t are located at a similar distance from the translation termination codon.
6          That sequence contained a premature translation termination codon.
7 ate that there are limited interactions with translation termination codons.
8  mRNAs and promotes readthrough of premature translation termination codons.
9 nd degrades transcripts containing premature translation termination codons.
10 bilization of transcripts carrying premature translation termination codons.
11 dation of yeast mRNAs that contain premature translation termination codons.
12 ism that degrades mRNAs containing premature translation termination codons.
13 egrade aberrant mRNAs that contain premature translation termination codons.
14 izes and degrades transcripts with premature translation-termination codons.
15 mechanism that degrades mRNAs with premature translation-termination codons.
16 ormal open reading frame (ORF) and brought a translation termination codon 33 amino acids downstream.
17                                            A translation termination codon and a single polyadenylati
18 otide region immediately downstream from the translation termination codon and upstream of sequences
19 es aberrant transcripts containing premature translation termination codons and regulates the levels
20 lace the TGC codon encoding Cys41 into a TGA translation termination codon, and characterized and com
21 ox translation initiation codons and partial translation termination codons are absent, the use of TG
22         Eukaryotic mRNAs harboring premature translation termination codons are recognized and rapidl
23       Recent results show that mRNAs without translation termination codons are unstable in eukaryoti
24 D) eliminates transcripts carrying premature translation termination codons, but the role of NMD on y
25 struction of a gammaHV68 mutant containing a translation termination codon in the LANA ORF (73.STOP).
26 n with a mutant virus containing a premature translation termination codon in the UL83 open reading f
27  can suppress the accurate identification of translation termination codons in eukaryotic cells.
28 tron 3, and in the second allele a premature translation-termination codon in exon 1 was identified.
29 ative splicing switches introduces premature translation termination codons into selected transcripts
30 68 mutant virus (45STOP) by the insertion of translation termination codons into the portion of the g
31                   mRNAs containing premature translation termination codons (nonsense mRNAs) are targ
32 ximately 180 bp, located 260 bases 3' to the translation termination codon of p21WAF1/CIP1 cDNA, was
33 .IX (hF.IX), or F.IX variants with premature translation termination codons, or missense mutations, u
34                                    All three translation termination codons, or nonsense codons, cont
35  is activated by the presence of a premature translation termination codon (PTC) in an atypical seque
36                                    Premature translation termination codon (PTC)-mediated effects on
37 rameshift in exon 7 that created a premature translation termination codon (PTC).
38 man genetic diseases are caused by premature translation-termination codon (PTC)-generating mutations
39        Eukaryotic mRNAs containing premature translation termination codons (PTCs) are rapidly degrad
40 essenger RNAs (mRNAs) that contain premature translation termination codons (PTCs) are targeted for r
41                                How premature translation termination codons (PTCs) mediate effects on
42 apid degradation of mRNA harboring premature translation termination codons (PTCs) serves to protect
43 d process that destroys mRNAs with premature translation termination codons (PTCs).
44 on VIII that changes tyrosine codon 426 to a translation termination codon resulting in an EPOR prote
45 pound that promotes readthrough of premature translation termination codons, suggesting that it may h
46 AAA) was identified 191 bp downstream of the translation termination codon (TGA).
47 an RNA element downstream of the gag natural translation termination codon that prevents degradation
48 we investigated the efficiency of eukaryotic translation termination codons, to assess codon readthro