Misreading of termination codons in eukaryotes by natural nonsense suppressor tRNAs

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Misreading of termination codons in eukaryotes by natural nonsense suppressor tRNAs.

Translational stop codon readthrough provides a regulatory mechanism of gene expression that is extensively utilised by positive-sense ssRNA viruses. The misreading of termination codons is achieved by a variety of naturally occurring suppressor tRNAs whose structure and function is the subject of this survey. All of the nonsense suppressors characterised to date (with the exception of selenocy...

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Stop codon readthrough may be promoted by the nucleotide environment or drugs. In such cases, ribosomes incorporate a natural suppressor tRNA at the stop codon, leading to the continuation of translation in the same reading frame until the next stop codon and resulting in the expression of a protein with a new potential function. However, the identity of the natural suppressor tRNAs involved in...

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Eukaryotic release factor 1 (eRF1) abolishes readthrough and competes with suppressor tRNAs at all three termination codons in messenger RNA.

It is known from experiments with bacteria and eukaryotic viruses that readthrough of termination codons located within the open reading frame (ORF) of mRNAs depends on the availability of suppressor tRNA(s) and the efficiency of termination in cells. Consequently, the yield of readthrough products can be used as a measure of the activity of polypeptide chain release factor(s) (RF), key compone...

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The universal genetic code includes three codons which signal polypeptide chain termination. These termination or nonsense codons are UAG (amber), UAA (ochre), and UGA (opal). Usually, Escherichia coli and other procaryotic cells do not contain transfer ribonucleic acids (tRNAs) which recognize these codons. However, such tRNAs can be created by suppressor mutations in tRNA genes, generating tR...

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ژورنال

عنوان ژورنال: Nucleic Acids Research

سال: 2001

ISSN: 1362-4962

DOI: 10.1093/nar/29.23.4767