181 results on '"Shatsky, Ivan N."'
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2. Unusually efficient CUG initiation of an overlapping reading frame in POLG mRNA yields novel protein POLGARF
3. Modifications of Ribosome Profiling that Provide New Data on the Translation Regulation
4. The Roles of eIF4G2 in Leaky Scanning and Reinitiation on the Human Dual-Coding POLG mRNA
5. Molecular Mechanisms of Translation Initiation in Eukaryotes
6. A researcher’s guide to the galaxy of IRESs
7. Specific mechanisms of translation initiation in higher eukaryotes: the eIF4G2 story
8. Elusive Trans-Acting Factors Which Operate with Type I (Poliovirus-like) IRES Elements
9. Additional file 1 of Non-AUG translation initiation in mammals
10. Ribosomal leaky scanning through a translated uORF requires eIF4G2
11. Cap- and IRES-independent scanning mechanism of translation initiation as an alternative to the concept of cellular IRESs
12. Specific mechanisms of translation initiation in higher eukaryotes: the eIF4G2 story
13. HCV IRES interacts with the 18S rRNA to activate the 40S ribosome for subsequent steps of translation initiation
14. A novel mechanism of eukaryotic translation initiation that is neither m7G-cap-, nor IRES-dependent
15. Glycyl-tRNA synthetase specifically binds to the poliovirus IRES to activate translation initiation
16. Lipoxygenase mRNA silencing in erythroid differentiation: the 3'UTR regulatory complex controls 60S ribosomal subunit joining
17. Unidirectional constant rate motion of the ribosomal scanning particle during eukaryotic translation initiation
18. Ribosome Pausing at Inefficient Codons at the End of the Replicase Coding Region Is Important for Hepatitis C Virus Genome Replication
19. Differential contribution of the m7G-cap to the 5′ end-dependent translation initiation of mammalian mRNAs
20. Cellular Gene Expression during Hepatitis C Virus Replication as Revealed by Ribosome Profiling
21. A prokaryotic-like mode of cytoplasmic eukaryotic ribosome binding to the initiation codon during internal translation initiation of hepatitis C and classical swine fever virus RNAs
22. eIF4G2 balances its own mRNA translation via a PCBP2-based feedback loop
23. Translatome and transcriptome analysis of TMA20 (MCT-1) and TMA64 (eIF2D) knockout yeast strains
24. A novel uORF-based regulatory mechanism controls translation of the human MDM2 and eIF2D mRNAs during stress
25. Cap-Independent Translation: What’s in a Name?
26. Tma64/eIF2D, Tma20/MCT-1, and Tma22/DENR Recycle Post-termination 40S Subunits In Vivo
27. Translation control of mRNAs encoding mammalian translation initiation factors
28. Eukaryotic translation elongation factor 2 (eEF2) catalyzes reverse translocation of the eukaryotic ribosome
29. Insights into the mechanisms of eukaryotic translation gained with ribosome profiling
30. Four translation initiation pathways employed by the leaderless mRNA in eukaryotes
31. Pros and cons of pDNA and mRNA transfection to study mRNA translation in mammalian cells
32. Does HIV-1 mRNA 5'-untranslated region bear an internal ribosome entry site?
33. The peculiar mode of translation elongation inhibition by antitumor drug harringtonin
34. The 5′ untranslated region of Apaf-1 mRNA directs translation under apoptosis conditions via a 5′ end-dependent scanning mechanism
35. Sliding of a 43S ribosomal complex from the recognized AUG codon triggered by a delay in eIF2-bound GTP hydrolysis
36. Oxygen and glucose deprivation induces widespread alterations in mRNA translation within 20 minutes
37. Translation of 5′ leaders is pervasive in genes resistant to eIF2 repression
38. [5] Electron microscopy studies of ribosomal RNA
39. Insights into the mechanisms of eukaryotic translation gained with ribosome profiling.
40. Author response: Translation of 5′ leaders is pervasive in genes resistant to eIF2 repression
41. Transcriptome-wide studies uncover the diversity of modes of mRNA recruitment to eukaryotic ribosomes
42. Sliding of a 43S ribosomal complex from the recognized AUG codon triggered by a delay in eIF2-bound GTP hydrolysis.
43. A novel mechanism of eukaryotic translation initiation that is neither m7G-cap-, nor IRES-dependent
44. Functional and Structural Similarities between the Internal Ribosome Entry Sites of Hepatitis C Virus and Porcine Teschovirus, a Picornavirus
45. Archaeal Translation Initiation Factor aIF2 Can Substitute for Eukaryotic eIF2 in Ribosomal Scanning during Mammalian 48S Complex Formation
46. GTP-independent tRNA Delivery to the Ribosomal P-site by a Novel Eukaryotic Translation Factor
47. Eukaryotic translation initiation machinery can operate in a bacterial-like mode without eIF2
48. Efficient Translation Initiation Directed by the 900-Nucleotide-Long and GC-Rich 5′ Untranslated Region of the Human Retrotransposon LINE-1 mRNA Is Strictly Cap Dependent Rather than Internal Ribosome Entry Site Mediated
49. Differential factor requirement to assemble translation initiation complexes at the alternative start codons of foot-and-mouth disease virus RNA
50. Oxygen and glucose deprivation induces widespread alterations in mRNA translation within 20 minutes.
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