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Výsledky projektu Studium nedávno popsaného mechanismu regulace genové exprese: programované pročítání stop kodónu

Výsledky

▼▲Typ výsledku ▼▲Autor celku ▼▲Název celku
(Celkem 5 zázn.)
Beznosková Petra. Rules of UGA-N decoding by near-cognate tRNAs and analysis of readthrough on short uORFs in yeast.. RNA, 2016, sv. 22(3), s. 456–466. ISSN 1355-8382. IF 4.936. [Článek v časopise]
Abstract
The molecular mechanism of stop codon recognition by the release factor eRF1 in complex with eRF3 has been described in great detail; however, our understanding of what determines the difference in termination efficiencies among various stop codon tetranucleotides and how near-cognate (nc) tRNAs recode stop codons during programmed readthrough in Saccharomyces cerevisiae is still poor. Here, we show that UGA-C as the only tetranucleotide of all four possible combinations dramatically exacerbated the readthrough phenotype of the stop codon recognition-deficient mutants in eRF1. Since the same is true also for UAA-C and UAG-C, we propose that the exceptionally high readthrough levels that all three stop codons display when followed by cytosine are partially caused by the compromised sampling ability of eRF1, which specifically senses cytosine at the +4 position. The difference in termination efficiencies among the remaining three UGA-N tetranucleotides is then given by their varying preferences for nc-tRNAs. In particular, UGA-A allows increased incorporation of Trp-tRNA whereas UGA-G and UGA-C favor Cys-tRNA. Our findings thus expand the repertoire of general decoding rules by showing that the +4 base determines the preferred selection of nc-tRNAs and, in the case of cytosine, it also genetically interacts with eRF1. Finally, using an example of the GCN4 translational control governed by four short uORFs, we also show how the evolution of this mechanism dealt with undesirable readthrough on those uORFs that serve as the key translation reinitiation promoting features of the GCN4 regulation, as both of these otherwise counteracting activities, readthrough versus reinitiation, are mediated by eIF3.
Beznosková, Petra, Vítězný poster z RNA2017 v Praze s názvem " Cellular levels of readthrough inducing tRNAs and their consequences in yeast and mammals". Shrnuje výsledky specificikých cílů (D); (E) a (C). [Jiný výsledek]
Beznosková Petra, Publikace s názvem "Rules of UGA-N decoding by near-cognate tRNAs and analysis of readthrough on short uORFs in yeast" přijatá do tisku 10.12.2015 [Jiný výsledek]
Beznosková Petra, Ústní prezentace s názvem " Update on the genetic code:trytophan and cysteine aa-tRNAs are incorporated at UGAA and UGAG stop codons, respectively" na RNA Club 2015 (Volume 13, September 18, 2015, České Budějovice, ISSN 1214-8598) [Jiný výsledek]
Beznosková Petra, Výsledek ke specifickému cíli (A). Hexanukleotid následující stop kodón genu TIF32 zvyšuje pročítání UGA stop kodónu oproti kontrolnímu konstruktu B686 a míra pročtení je závislá na celistvosti eIF3 komplexu (porovnej TIF35 vs. mutantní KLF). Kvasinkové kmeny nesoucí alelu TIF35 nebo mutantní tif35-KLF byly transformovány reporterovými plazmidy nesoucími stop kodón UGA a hexanukleotid z B686, BSC4 a TIF32 a sense kodón CAA mezi dvěmi luciferázami- renillou a firefly. Pročítání stop kodónu bylo změřeno podle Keeling et al. 2004. [Jiný výsledek]
Poslední změna: 31. květen 2022 14:50 
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