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Showing 1 to 3 of 3 for “"Translational bypassing"”.

  1. Programmed genetic decoding with an emphasis on translational bypassing

    … or sense codon. This assortment of non-canonical translational events is collectively known as Recoding. It can be further subdivided into several respective categories: frameshifting, bypassing, and redefinition. Recoding events are distinct from standard errors in translation due to the …

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  2. Genetic decoding dynamics: from its exploitation to enhance or rescue gene expression to a search for relevance for early evolution

    … relevance to this thesis, result in ribosomes bypassing long untranslated regions. 30 – 50% of ribosomes successfully bypass a fifty-nucleotide insertion in phage T4 gene 60 mRNA. This coding gap begins with an in-frame stop codon and is flanked by matching GGA glycine codons. Bypassing is …

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  3. The role of a highly conserved eubacterial ribosomal protein in translation quality control

    … that the absence of L9 leads to increased translational bypassing, frameshifting, and stop codon readthrough. L9 is part of the large subunit of the prokaryotic ribosome and is located more than 90 Å from the site of decoding, making it difficult to envision how it might affect decoding and …

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