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Biochemistry. Biokhimiia|March 9, 2025
A Portrait of Three Mammalian Bicistronic mRNA Transcripts, Derived from the Genes ASNSD1, SLC35A4, and MIEF1Dmitry E Andreev, Ivan N ShatskyInternational Journal of Molecular Sciences|December 23, 2022
Elusive Trans-Acting Factors Which Operate with Type I (Poliovirus-like) IRES ElementsDmitry E Andreev, Michael Niepmann, Ivan N ShatskyBiochemistry. Biokhimiia|September 27, 2021
Modifications of Ribosome Profiling that Provide New Data on the Translation RegulationDmitry E Andreev, Viktoriya V Smirnova, Ivan N ShatskyNature Structural & Molecular Biology|July 8, 2008
Eukaryotic translation initiation machinery can operate in a bacterial-like mode without eIF2Ilya M Terenin, Sergey E Dmitriev, Dmitry E Andreev, et al.Nucleic Acids Research|December 27, 2012
A novel mechanism of eukaryotic translation initiation that is neither m7G-cap-, nor IRES-dependentIlya M Terenin, Dmitri E Andreev, Sergey E Dmitriev, et al.Nucleic Acids Research|July 23, 2013
HCV IRES interacts with the 18S rRNA to activate the 40S ribosome for subsequent steps of translation initiationAlexey A Malygin, Olga A Kossinova, Ivan N Shatsky, et al.RNA (New York, N.Y.)|December 14, 2022
Specific mechanisms of translation initiation in higher eukaryotes: the eIF4G2 storyEkaterina D Shestakova, Victoria V Smirnova, Ivan N Shatsky, et al.Molecules and Cells|November 6, 2010
Cap- and IRES-independent scanning mechanism of translation initiation as an alternative to the concept of cellular IRESsIvan N Shatsky, Sergey E Dmitriev, Ilya M Terenin, et al.Critical Reviews in Biochemistry and Molecular Biology|February 14, 2014
Transcriptome-wide studies uncover the diversity of modes of mRNA recruitment to eukaryotic ribosomesIvan N Shatsky, Sergey E Dmitriev, Dmitri E Andreev, et al.Gene|December 19, 2015
Pros and cons of pDNA and mRNA transfection to study mRNA translation in mammalian cellsDmitry E Andreev, Ilya M Terenin, Sergey E Dmitriev, et al.Pageof 5