160 results on '"Valášek, Leoš Shivaya"'
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2. Human DUS1L catalyzes dihydrouridine modification at tRNA positions 16/17, and DUS1L overexpression perturbs translation
3. Differential effects of 40S ribosome recycling factors on reinitiation at regulatory uORFs in GCN4 mRNA are not dictated by their roles in bulk 40S recycling
4. Stem-loop-induced ribosome queuing in the uORF2/ATF4 overlap fine-tunes stress-induced human ATF4 translational control
5. Author Correction: Short tRNA anticodon stem and mutant eRF1 allow stop codon reassignment
6. Short tRNA anticodon stem and mutant eRF1 allow stop codon reassignment
7. Selective footprinting of 40S and 80S ribosome subpopulations (Sel-TCP-seq) to study translation and its control
8. Perturbations in eIF3 subunit stoichiometry alter expression of ribosomal proteins and key components of the MAPK signaling pathways.
9. Structural Differences in Translation Initiation between Pathogenic Trypanosomatids and Their Mammalian Hosts
10. Selective Translation Complex Profiling Reveals Staged Initiation and Co-translational Assembly of Initiation Factor Complexes
11. RIP-seq reveals RNAs that interact with RNA polymerase and primary sigma factors in bacteria
12. RIP-seq reveals RNAs that interact with RNA polymerase and primary sigma factors in bacteria.
13. Dynamics of the Pollen Sequestrome Defined by Subcellular Coupled Omics
14. Perturbations in eIF3 subunit stoichiometry alter expression of ribosomal proteins and key components of the MAPK signaling pathway
15. Stops making sense – For the people?
16. mRNA Translation: Fungal Variations on a Eukaryotic Theme
17. ZOMES: Cell physiology determined by PCI complexes and protein turnover
18. Internal Ribosome Entry Site, Eukaryotic
19. Translation Initiation in Eukaryotes, Reinitiation
20. Functional Characterization of the Role of the N-terminal Domain of the c/Nip1 Subunit of Eukaryotic Initiation Factor 3 (eIF3) in AUG Recognition
21. Untranslated Region (UTR)
22. eIF4G is retained on ribosomes elongating and terminating on short upstream ORFs to control reinitiation in yeast
23. Regulatory start-stop elements in 5’ untranslated regions pervasively modulate translation
24. Fail-safe mechanism of GCN4 translational control—uORF2 promotes reinitiation by analogous mechanism to uORF1 and thus secures its key role in GCN4 expression
25. Structural integrity of the PCI domain of eIF3a/TIF32 is required for mRNA recruitment to the 43S pre-initiation complexes
26. Cysteine tRNA acts as a stop codon readthrough-inducing tRNA in the human HEK293T cell line
27. Increased expression of tryptophan and tyrosine tRNAs elevates stop codon readthrough of reporter systems in human cell lines
28. Kozak Consensus Sequence
29. The eIF3c/NIP1 PCI domain interacts with RNA and RACK1/ASC1 and promotes assembly of translation preinitiation complexes
30. Unique features of mRNA translation initiation in trypanosomatids
31. Canonical and non-canonical nuclear genetic codes: genomics of Blastocrithidiinae.
32. Adapted formaldehyde gradient cross-linking protocol implicates human eIF3d and eIF3c, k and l subunits in the 43S and 48S pre-initiation complex assembly, respectively
33. uS3/Rps3 controls fidelity of translation termination and programmed stop codon readthrough in co-operation with eIF3
34. Selective Translation Complex Profiling Reveals Staged Initiation and Co-translational Assembly of Initiation Factor Complexes
35. Structural differences in translation initiation between pathogenic trypanosomatids and their mammalian hosts
36. Stem-loop-induced ribosome queuing in the uORF2/ATF4overlap fine-tunes stress-induced human ATF4 translational control
37. Adapted formaldehyde gradient cross-linking protocol implicates human eIF3d and eIF3c, k and l subunits in the 43S and 48S pre-initiation complex assembly, respectively.
38. Please do not recycle! Translation reinitiation in microbes and higher eukaryotes
39. Does eIF3 promote reinitiation after translation of short upstream ORFs also in mammalian cells?
40. Embraced by eIF3: structural and functional insights into the roles of eIF3 across the translation cycle
41. An emergency brake for protein synthesis
42. In vivoevidence that eIF3 stays bound to ribosomes elongating and terminating on short upstream ORFs to promote reinitiation
43. Protocol for detecting and quantifying human ATF4-HA in non-stress versus stress conditions using automated and quantitative western blotting (Jess)
44. Eukaryotic translation initiation factor 3 plays distinct roles at the mRNA entry and exit channels of the ribosomal preinitiation complex
45. Human eIF3b and eIF3a serve as the nucleation core for the assembly of eIF3 into two interconnected modules: the yeast-like core and the octamer
46. Author response: Eukaryotic translation initiation factor 3 plays distinct roles at the mRNA entry and exit channels of the ribosomal preinitiation complex
47. A systematic computational analysis of the rRNA–3′ UTR sequence complementarity suggests a regulatory mechanism influencing post-termination events in metazoan translation
48. In-depth analysis of cis-determinants that either promote or inhibit reinitiation on GCN4 mRNA after translation of its four short uORFs
49. Rules of UGA-N decoding by near-cognate tRNAs and analysis of readthrough on short uORFs in yeast
50. Translation initiation factor eIF3 promotes programmed stop codon readthrough
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