AI Article Synopsis

  • Stop codon readthrough is a process where a stop codon is decoded by a near-cognate tRNA, which is used by viruses and eukaryotic cells for specific protein synthesis.
  • The identification of readthrough-inducing tRNAs (rti-tRNAs) in yeast leads to the development of the YARIS system, a tool for detecting readthrough levels at all twelve stop-codon tetranucleotides.
  • The YARIS system is useful for studying translation readthrough, helping to discover the effects of rti-tRNA modifications and various readthrough-inducing drugs, thus facilitating the understanding of genetic interactions.

Article Abstract

Stop codon readthrough-the decoding of a stop codon by a near-cognate tRNA-is employed by viruses to balance levels of enzymatic and structural proteins and by eukaryotic cells to enable isoform-specific protein synthesis in response to external stimuli. Owing to the prevalence of premature termination codons in human disease, readthrough has emerged as an attractive therapeutic target. A growing list of various features, for example the +4 nucleotide immediately following the stop codon, modulate readthrough levels, underscoring the need for systematic investigation of readthrough. Here, we identified and described a complete group of yeast tRNAs that induce readthrough in the stop-codon tetranucleotide manner when overexpressed, designated readthrough-inducing tRNAs (rti-tRNAs). These rti-tRNAs are the keystones of YARIS (yeast applied readthrough inducing system), a reporter-based assay enabling simultaneous detection of readthrough levels at all twelve stop-codon tetranucleotides and as a function of the complete set of rti-tRNAs. We demonstrate the utility of YARIS for systematic study of translation readthrough by employing it to interrogate the effects of natural rti-tRNA modifications, as well as various readthrough-inducing drugs (RTIDs). This analysis identified a variety of genetic interactions demonstrating the power of YARIS to characterize existing and identify novel RTIDs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6614816PMC
http://dx.doi.org/10.1093/nar/gkz346DOI Listing

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