Investigating stop codon readthrough in Saccharomyces cerevisiae
Stop codon readthrough occurs via genetic and epigenetic mechanisms, resulting in a longer polypeptide chain at the C-terminus. Although these readthroughs may seem like an error made by translational mechanisms, evidence from yeast suggests that stop codon readthrough has an impact on various cellular processes. Readthrough has the potential to create
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Anticodon-edited tRNA enables translational readthrough of COL4A5 premature termination codons. [PDF]
Omachi K, Porter JJ, Lueck JD, Miner JH.
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Substitutions in RNA-binding protein Hrp1 map a potential interaction surface with the yeast RNA polymerase II elongation complex. [PDF]
Wang M, Arora P, Kaplan CD, Brow DA.
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Transcriptional readthrough at Atf4 locus suppresses Rps19bp1 and impairs heart development. [PDF]
Zhang Z +11 more
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Protein C-terminal variations impact proteostasis. [PDF]
Chu CY +8 more
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Glc7/PP1 triggers Paf1 complex dissociation from RNA polymerase II to enable transcription termination. [PDF]
Namjilsuren S, Arndt KM.
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Recovery of α-L-fucosidase in fucosidosis nonsense variants by readthrough stimulation and release factor degradation. [PDF]
Bäumges H +5 more
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Eukaryotic initiation factor eIF3 facilitates loading of eukaryotic release factor eRF1 or suppressor tRNA to the ribosome. [PDF]
Shuvalova E +5 more
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RFFL-mediated protein quality control limits functional rescue of TRID-CFTR modulator combination therapy for cystic fibrosis nonsense mutations. [PDF]
Tateishi H +3 more
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Translational readthrough therapy for ADPKD induces polycystin1 expression and partially rescues functional deficits in PKD1 mutant cells. [PDF]
Torban E +7 more
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